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1.
Cells ; 12(9)2023 04 27.
Artículo en Inglés | MEDLINE | ID: mdl-37174668

RESUMEN

Impairment of one-carbon metabolism during pregnancy, either due to nutritional deficiencies in B9 or B12 vitamins or caused by specific genetic defects, is often associated with neurological defects, including cognitive dysfunction that persists even after vitamin supplementation. Animal nutritional models do not allow for conclusions regarding the specific brain mechanisms that may be modulated by systemic compensations. Using the Cre-lox system associated to the neuronal promoter Thy1.2, a knock-out model for the methionine synthase specifically in the brain was generated. Our results on the neurobehavioral development of offspring show that the absence of methionine synthase did not lead to growth retardation, despite an effective reduction of both its expression and the methylation status in brain tissues. Behaviors were differently affected according to their functional outcome. Only temporary retardations were recorded in the acquisition of vegetative functions during the suckling period, compared to a dramatic reduction in cognitive performance after weaning. Investigation of the glutamatergic synapses in cognitive areas showed a reduction of AMPA receptors phosphorylation and clustering, indicating an epigenomic effect of the neuronal deficiency of methionine synthase on the reduction of glutamatergic synapses excitability. Altogether, our data indicate that cognitive impairment associated with methionine synthase deficiency may not only result from neurodevelopmental abnormalities, but may also be the consequence of alterations in functional plasticity of the brain.


Asunto(s)
Errores Innatos del Metabolismo de los Aminoácidos , Disfunción Cognitiva , Ratones , Embarazo , Animales , Femenino , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Vitamina B 12
2.
Nutrients ; 14(19)2022 Sep 22.
Artículo en Inglés | MEDLINE | ID: mdl-36235580

RESUMEN

Folate is a dietary micronutrient essential to one-carbon metabolism. The World Health Organisation recommends folic acid (FA) supplementation pre-conception and in early pregnancy to reduce the risk of fetal neural tube defects (NTDs). Subsequently, many countries (~92) have mandatory FA fortification policies, as well as recommendations for periconceptional FA supplementation. Mandatory fortification initiatives have been largely successful in reducing the incidence of NTDs. However, humans have limited capacity to incorporate FA into the one-carbon metabolic pathway, resulting in the increasingly ubiquitous presence of circulating unmetabolised folic acid (uFA). Excess FA intake has emerged as a risk factor in gestational diabetes mellitus (GDM). Several other one-carbon metabolism components (vitamin B12, homocysteine and choline-derived betaine) are also closely entwined with GDM risk, suggesting a role for one-carbon metabolism in GDM pathogenesis. There is growing evidence from in vitro and animal studies suggesting a role for excess FA in dysregulation of one-carbon metabolism. Specifically, high levels of FA reduce methylenetetrahydrofolate reductase (MTHFR) activity, dysregulate the balance of thymidylate synthase (TS) and methionine synthase (MTR) activity, and elevate homocysteine. High homocysteine is associated with increased oxidative stress and trophoblast apoptosis and reduced human chorionic gonadotrophin (hCG) secretion and pancreatic ß-cell function. While the relationship between high FA, perturbed one-carbon metabolism and GDM pathogenesis is not yet fully understood, here we summarise the current state of knowledge. Given rising rates of GDM, now estimated to be 14% globally, and widespread FA food fortification, further research is urgently needed to elucidate the mechanisms which underpin GDM pathogenesis.


Asunto(s)
Diabetes Gestacional , Defectos del Tubo Neural , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Animales , Betaína , Carbono/metabolismo , Colina , Femenino , Ácido Fólico/metabolismo , Homocisteína , Humanos , Metilenotetrahidrofolato Reductasa (NADPH2)/metabolismo , Micronutrientes , Embarazo , Timidilato Sintasa , Vitamina B 12
3.
BMC Biol ; 20(1): 228, 2022 10 08.
Artículo en Inglés | MEDLINE | ID: mdl-36209095

RESUMEN

BACKGROUND: One-carbon metabolism, which includes the folate and methionine cycles, involves the transfer of methyl groups which are then utilised as a part of multiple physiological processes including redox defence. During the methionine cycle, the vitamin B12-dependent enzyme methionine synthetase converts homocysteine to methionine. The enzyme S-adenosylmethionine (SAM) synthetase then uses methionine in the production of the reactive methyl carrier SAM. SAM-binding methyltransferases then utilise SAM as a cofactor to methylate proteins, small molecules, lipids, and nucleic acids. RESULTS: We describe a novel SAM methyltransferase, RIPS-1, which was the single gene identified from forward genetic screens in Caenorhabditis elegans looking for resistance to lethal concentrations of the thiol-reducing agent dithiothreitol (DTT). As well as RIPS-1 mutation, we show that in wild-type worms, DTT toxicity can be overcome by modulating vitamin B12 levels, either by using growth media and/or bacterial food that provide higher levels of vitamin B12 or by vitamin B12 supplementation. We show that active methionine synthetase is required for vitamin B12-mediated DTT resistance in wild types but is not required for resistance resulting from RIPS-1 mutation and that susceptibility to DTT is partially suppressed by methionine supplementation. A targeted RNAi modifier screen identified the mitochondrial enzyme methylmalonyl-CoA epimerase as a strong genetic enhancer of DTT resistance in a RIPS-1 mutant. We show that RIPS-1 is expressed in the intestinal and hypodermal tissues of the nematode and that treating with DTT, ß-mercaptoethanol, or hydrogen sulfide induces RIPS-1 expression. We demonstrate that RIPS-1 expression is controlled by the hypoxia-inducible factor pathway and that homologues of RIPS-1 are found in a small subset of eukaryotes and bacteria, many of which can adapt to fluctuations in environmental oxygen levels. CONCLUSIONS: This work highlights the central importance of dietary vitamin B12 in normal metabolic processes in C. elegans, defines a new role for this vitamin in countering reductive stress, and identifies RIPS-1 as a novel methyltransferase in the methionine cycle.


Asunto(s)
Sulfuro de Hidrógeno , Ácidos Nucleicos , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/genética , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Animales , Caenorhabditis elegans/metabolismo , Carbono/metabolismo , Ditiotreitol/metabolismo , Ácido Fólico/metabolismo , Homocisteína/metabolismo , Sulfuro de Hidrógeno/metabolismo , Ligasas/metabolismo , Lípidos , Mercaptoetanol/metabolismo , Metionina/metabolismo , Metiltransferasas/genética , Metiltransferasas/metabolismo , Oxígeno/metabolismo , Sustancias Reductoras/metabolismo , S-Adenosilmetionina/metabolismo , Compuestos de Sulfhidrilo/metabolismo , Vitamina B 12/metabolismo , Vitamina B 12/farmacología , Vitaminas/metabolismo
4.
Crit Rev Biochem Mol Biol ; 57(2): 133-155, 2022 04.
Artículo en Inglés | MEDLINE | ID: mdl-34608838

RESUMEN

Methyl-Cobalamin (Cbl) derives from dietary vitamin B12 and acts as a cofactor of methionine synthase (MS) in mammals. MS encoded by MTR catalyzes the remethylation of homocysteine to generate methionine and tetrahydrofolate, which fuel methionine and cytoplasmic folate cycles, respectively. Methionine is the precursor of S-adenosyl methionine (SAM), the universal methyl donor of transmethylation reactions. Impaired MS activity results from inadequate dietary intake or malabsorption of B12 and inborn errors of Cbl metabolism (IECM). The mechanisms at the origin of the high variability of clinical presentation of impaired MS activity are classically considered as the consequence of the disruption of the folate cycle and related synthesis of purines and pyrimidines and the decreased synthesis of endogenous methionine and SAM. For one decade, data on cellular and animal models of B12 deficiency and IECM have highlighted other key pathomechanisms, including altered interactome of MS with methionine synthase reductase, MMACHC, and MMADHC, endoplasmic reticulum stress, altered cell signaling, and genomic/epigenomic dysregulations. Decreased MS activity increases catalytic protein phosphatase 2A (PP2A) and produces imbalanced phosphorylation/methylation of nucleocytoplasmic RNA binding proteins, including ELAVL1/HuR protein, with subsequent nuclear sequestration of mRNAs and dramatic alteration of gene expression, including SIRT1. Decreased SAM and SIRT1 activity induce ER stress through impaired SIRT1-deacetylation of HSF1 and hypomethylation/hyperacetylation of peroxisome proliferator-activated receptor-γ coactivator-1α (PGC1α), which deactivate nuclear receptors and lead to impaired energy metabolism and neuroplasticity. The reversibility of these pathomechanisms by SIRT1 agonists opens promising perspectives in the treatment of IECM outcomes resistant to conventional supplementation therapies.


Asunto(s)
5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa , Sirtuina 1 , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/genética , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Animales , Ácido Fólico , Mamíferos/metabolismo , Metionina , Sirtuina 1/genética , Sirtuina 1/metabolismo , Vitamina B 12/genética , Vitamina B 12/metabolismo , Vitaminas
5.
Nat Metab ; 3(11): 1512-1520, 2021 11.
Artículo en Inglés | MEDLINE | ID: mdl-34799699

RESUMEN

Mammalian cells require activated folates to generate nucleotides for growth and division. The most abundant circulating folate species is 5-methyl tetrahydrofolate (5-methyl-THF), which is used to synthesize methionine from homocysteine via the cobalamin-dependent enzyme methionine synthase (MTR). Cobalamin deficiency traps folates as 5-methyl-THF. Here, we show using isotope tracing that MTR is only a minor source of methionine in cell culture, tissues or xenografted tumours. Instead, MTR is required for cells to avoid folate trapping and assimilate 5-methyl-THF into other folate species. Under conditions of physiological extracellular folates, genetic MTR knockout in tumour cells leads to folate trapping, purine synthesis stalling, nucleotide depletion and impaired growth in cell culture and as xenografts. These defects are rescued by free folate but not one-carbon unit supplementation. Thus, MTR plays a crucial role in liberating THF for use in one-carbon metabolism.


Asunto(s)
5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Neoplasias/metabolismo , Tetrahidrofolatos/metabolismo , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/genética , Línea Celular Tumoral , Proliferación Celular , Ácido Fólico/metabolismo , Regulación Enzimológica de la Expresión Génica , Regulación Neoplásica de la Expresión Génica , Humanos , Redes y Vías Metabólicas , Metionina/metabolismo , Metilación , Mutación , Neoplasias/etiología , Purinas/biosíntesis , Deficiencia de Vitamina B 12/metabolismo
6.
Cell Rep ; 36(13): 109753, 2021 09 28.
Artículo en Inglés | MEDLINE | ID: mdl-34592146

RESUMEN

Alzheimer's disease (AD) is a devastating neurodegenerative disorder with no effective treatment. Diet, as a modifiable risk factor for AD, could potentially be targeted to slow disease onset and progression. However, complexity of the human diet and indirect effects of the microbiome make it challenging to identify protective nutrients. Multiple factors contribute to AD pathogenesis, including amyloid beta (Aß) deposition, energy crisis, and oxidative stress. Here, we use Caenorhabditis elegans to define the impact of diet on Aß proteotoxicity. We discover that dietary vitamin B12 alleviates mitochondrial fragmentation, bioenergetic defects, and oxidative stress, delaying Aß-induced paralysis without affecting Aß accumulation. Vitamin B12 has this protective effect by acting as a cofactor for methionine synthase, impacting the methionine/S-adenosylmethionine (SAMe) cycle. Vitamin B12 supplementation of B12-deficient adult Aß animals is beneficial, demonstrating potential for vitamin B12 as a therapy to target pathogenic features of AD triggered by proteotoxic stress.


Asunto(s)
Péptidos beta-Amiloides/metabolismo , Metionina/metabolismo , S-Adenosilmetionina/metabolismo , Vitamina B 12/farmacología , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/efectos de los fármacos , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Animales , Caenorhabditis elegans/metabolismo , Proteínas de Caenorhabditis elegans/metabolismo , Estrés Oxidativo/efectos de los fármacos , Vitaminas/farmacología
7.
Nutr Hosp ; 38(5): 1026-1033, 2021 Oct 13.
Artículo en Español | MEDLINE | ID: mdl-34313134

RESUMEN

INTRODUCTION: Objective: a quantification of dietary intakes of the micronutrients involved in the methylation-methionine cycle (choline, betaine, folate, vitamins B6 and B12) in a representative sample of pregnant women in Spain; assessment of intake adequacy to available official recommendations; and analysis of their main food sources. Material and methods: the median intake of each micronutrient was established using food consumption data reported in the National Dietary Survey of adults, the elderly, and pregnant women (ENALIA-2) (n = 133). For folate, vitamin B6 and vitamin B12 intake, nutritional composition data from the Spanish Food Composition Tables were used, whereas for choline and betaine, which are not included in European food composition databases, the National Nutrient Database for Standard Reference of the United States Department of Agriculture (USDA) was considered. Intake adequacy was estimated in accordance with the recommendations of the main Spanish, European, and US guidelines. Results: mean daily intakes observed were 271.1 mg/day of choline; 142.5 mg/day of betaine; 182.8 µg/day of folate; 1.4 mg/day of vitamin B6; and 4.5 µg/day of vitamin B12. Intake adequacy levels were insufficient for choline (< 60.2 %) and folate (< 30.5 %); close to adequacy for vitamin B6 (> 71.6 %); and fully adequate only in the case of vitamin B12 (> 101.1 %). It is not possible to draw any conclusions regarding betaine intake in the absence of established recommendations. Main food sources included foods of animal origin for choline and vitamin B12 (71.8 % and 97.4 %, respectively); cereals and derivatives for betaine (85.3 %); vegetables (27.5 %) together with cereals and derivatives (18.6 %) for folate; and meats and derivatives (26.6 %) followed by vegetables (17.9 %) for vitamin B6. Conclusions: these findings are clearly indicative of the need to improve the intake and nutritional status of these components, which are of great nutritional interest for the health of pregnant women and, consequently, of their offspring. Consequent to the degree of adequacy observed, it seems necessary and urgent to employ not only dietary improvement strategies and the use of fortified foods, but also nutritional supplements with an individualized approach.


INTRODUCCIÓN: Objetivo: cuantificar las ingestas dietéticas de los micronutrientes implicados en el ciclo metilación-metionina (colina, betaína, folatos, vitaminas B6 y B12) en una muestra representativa de mujeres gestantes residentes en España; determinar la adecuación a las recomendaciones, y analizar sus principales fuentes alimentarias. Material y métodos: la determinación de la ingesta media se realizó a partir de los datos de consumo de los alimentos recogidos en la "Encuesta Nacional de Alimentación en población adulta, mayores y embarazadas" (ENALIA-2) (n = 133). Para el cálculo del aporte de folatos y de vitaminas B6 y B12 se emplearon los datos de composición nutricional recogidos en las "Tablas de Composición de Alimentos en España", mientras que para la colina y la betaína, nutrientes no incluidos en las bases de datos de composición de alimentos en Europa, se empleó la "Base de Datos Nacional de Nutrientes para Referencia Estándar del Departamento de Agricultura de los Estados Unidos" (USDA). La adecuación de la ingesta se estimó de acuerdo con las recomendaciones de las principales guías españolas, europeas y estadounidenses. Resultados: las ingestas medias diarias observadas fueron de 271,1 mg/día de colina; 142,5 mg/día de betaína; 182,8 µg/día de folatos; 1,4 mg/día de vitamina B6; y 4,5 µg/día de vitamina B12. Los niveles de adecuación a las recomendaciones resultaron insuficientes para la colina (< 60,2 %) y los folatos (< 30,5 %); cercanos a la adecuación para la vitamina B6 (> 71,6 %); y plenamente adecuados únicamente en el caso de la vitamina B12 (> 101,1 %). No resulta posible extraer ninguna conclusión con respecto al aporte de betaína al no existir recomendaciones establecidas. Las principales fuentes alimentarias fueron: alimentos de origen animal para la colina y la vitamina B12 (71,8 % y 97,4 %, respectivamente); cereales y derivados para la betaína (85,3 %); verduras y hortalizas (27,5 %) junto a cereales y derivados (18,6 %) para los folatos; y carnes y derivados (26,6 %), seguidos de verduras y hortalizas (17,9 %) para la vitamina B6. Conclusiones: los resultados obtenidos son indicativos de la necesidad de mejorar la ingesta y el estado nutricional de estos componentes de gran interés para la salud de la mujer embarazada. Como consecuencia del grado de adecuación observado, parece necesario y urgente el empleo no solo de estrategias para mejorar la dieta y el uso de alimentos fortificados, sino también de suplementos nutricionales de manera personalizada.


Asunto(s)
5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Ingestión de Alimentos , Nutrientes/administración & dosificación , Adulto , Suplementos Dietéticos/estadística & datos numéricos , Femenino , Humanos , Nutrientes/uso terapéutico , Valor Nutritivo/fisiología , Embarazo , Mujeres Embarazadas , España
8.
Am J Clin Nutr ; 113(5): 1361-1371, 2021 05 08.
Artículo en Inglés | MEDLINE | ID: mdl-33675351

RESUMEN

BACKGROUND: Periconceptional folic acid (FA) supplementation is recommended to prevent the occurrence of neural tube defects. Currently, most over-the-counter FA supplements in Canada and the United States contain 1 mg FA and some women are prescribed 5 mg FA/d. High-dose FA is hypothesized to impair 1-carbon metabolism. We aimed to determine folate and 1-carbon metabolism biomarkers in pregnant women exposed to 1 mg or 5 mg FA. OBJECTIVES: This was an ancillary study within the Folic Acid Clinical Trial (FACT), a randomized, double-blinded, placebo-controlled, phase III trial designed to assess the efficacy of high-dose FA to prevent preeclampsia. METHODS: For FACT, women were randomized at 8-16 gestational weeks to receive daily 4.0 mg FA (high dose) or placebo (low dose) plus their usual supplementation (≤1.1 mg). Women were recruited from 3 Canadian FACT centers and provided nonfasting blood samples at 24-26 gestational weeks for measurement of RBC and serum total folate, serum unmetabolized FA (UMFA), tetrahydrofolate (THF), 5-methylTHF, 5-formylTHF, 5,10-methenylTHF, and MeFox (pyrazino-s-triazine derivative of 4α-hydroxy-5-methylTHF, a 5-methylTHF oxidation product); total vitamins B-12 and B-6; and plasma total homocysteine. Group differences were determined using χ2, Fisher exact, and Wilcoxon rank-sum tests. RESULTS: Nineteen (38%) women received high-dose FA and 31 (62%) received low-dose FA. The median RBC folate concentration was 2701 (IQR: 2243-3032) nmol/L and did not differ between groups. The high-dose group had higher serum total folate (median: 148.4 nmol/L, IQR: 110.4-181.2; P = 0.007), UMFA (median: 4.6 nmol/L, IQR: 2.5-33.8; P = 0.008), and 5-methylTHF (median: 126.6 nmol/L, IQR: 98.8-158.6; P = 0.03) compared with the low-dose group (median: 122.8 nmol/L, IQR: 99.5-136.0; median: 1.9 nmol/L, IQR: 0.9-4.1; median: 108.6 nmol/L, IQR: 96.4-123.2, respectively). Other biomarkers of 1-carbon metabolism did not differ. CONCLUSIONS: High-dose FA supplementation in early pregnancy increases maternal serum folate but not RBC folate concentrations, suggesting tissue saturation. Higher UMFA concentrations in women receiving high-dose FA supplements suggest that these doses are supraphysiologic but with no evidence of altered 1-carbon metabolism.


Asunto(s)
Suplementos Dietéticos , Ácido Fólico/administración & dosificación , Ácido Fólico/farmacología , Complejo Vitamínico B/administración & dosificación , Complejo Vitamínico B/farmacología , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/genética , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Biomarcadores/sangre , Relación Dosis-Respuesta a Droga , Método Doble Ciego , Femenino , Regulación de la Expresión Génica/efectos de los fármacos , Humanos , Metilenotetrahidrofolato Deshidrogenasa (NADP)/genética , Metilenotetrahidrofolato Deshidrogenasa (NADP)/metabolismo , Metilenotetrahidrofolato Reductasa (NADPH2)/genética , Metilenotetrahidrofolato Reductasa (NADPH2)/metabolismo , Antígenos de Histocompatibilidad Menor/genética , Antígenos de Histocompatibilidad Menor/metabolismo , Polimorfismo de Nucleótido Simple , Embarazo
9.
Immunopharmacol Immunotoxicol ; 42(3): 179-186, 2020 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-32131654

RESUMEN

Nitrous oxide is a common gas used as an anesthetic agent and analgesic medication in operating rooms. The gas inhibits vitamin B12 dependent-methionine synthase, which converts L-homocysteine and 5-methyltetrahydrofolate to L-methionine and tetrahydrofolate, respectively, via a methylation process. The immune system has been frequently reported to be suppressed in anesthetized subjects during the postoperative period. Although previous reviews have focused on the pathophysiologic role of nitrous oxide, none of them has considered the harmful effects of nitrous oxide on the Defense system of the host. In this article, the authors review current studies on the effects of nitrous oxide on the immune system of both patients undergoing surgery and occupational exposure, as well as preclinical studies. Moreover, this paper opens a new horizon for future studies in the context of underlying mechanisms of nitrous oxide actions on the immune system.


Asunto(s)
Anestésicos por Inhalación/efectos adversos , Sistema Inmunológico/efectos de los fármacos , Óxido Nitroso/efectos adversos , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Animales , Evaluación Preclínica de Medicamentos , Humanos , Sistema Inmunológico/metabolismo , Ensayos Clínicos Controlados Aleatorios como Asunto , Tetrahidrofolatos/metabolismo , Vitamina B 12/metabolismo
10.
Am J Clin Nutr ; 109(3): 674-683, 2019 03 01.
Artículo en Inglés | MEDLINE | ID: mdl-30848279

RESUMEN

BACKGROUND: The risk of neural tube defects (NTDs) is influenced by nutritional factors and genetic determinants of one-carbon metabolism. A key pathway of this metabolism is the vitamin B-12- and folate-dependent remethylation of homocysteine, which depends on methionine synthase (MS, encoded by MTR), methionine synthase reductase, and methylenetetrahydrofolate reductase. Methionine, the product of this pathway, is the direct precursor of S-adenosylmethionine (SAM), the universal methyl donor needed for epigenetic mechanisms. OBJECTIVES: This study aimed to evaluate whether the availability of vitamin B-12 and folate and the expression or activity of the target enzymes of the remethylation pathway are involved in NTD risk. METHODS: We studied folate and vitamin B-12 concentrations and activity, expression, and gene variants of the 3 enzymes in liver from 14 NTD and 16 non-NTD fetuses. We replicated the main findings in cord blood from pregnancies of 41 NTD fetuses compared with 21 fetuses with polymalformations (metabolic and genetic findings) and 375 control pregnancies (genetic findings). RESULTS: The tissue concentration of vitamin B-12 (P = 0.003), but not folate, and the activity (P = 0.001), transcriptional level (P = 0.016), and protein expression (P = 0.003) of MS were decreased and the truncated inactive isoforms of MS were increased in NTD livers. SAM was significantly correlated with MS activity and vitamin B-12. A gene variant in exon 1 of GIF (Gastric Intrinsic Factor gene) was associated with a dramatic decrease of liver vitamin B-12 in 2 cases. We confirmed the decreased vitamin B-12 in cord blood from NTD pregnancies. A gene variant of GIF exon 3 was associated with NTD risk. CONCLUSIONS: The decreased vitamin B-12 in liver and cord blood and decreased expression and activity of MS in liver point out the impaired remethylation pathway as hallmarks associated with NTD risk. We suggest evaluating vitamin B-12 in the nutritional recommendations for prevention of NTD risk beside folate fortification or supplementation.


Asunto(s)
5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/genética , Enfermedades Fetales/enzimología , Hígado/metabolismo , Defectos del Tubo Neural/enzimología , Vitamina B 12/metabolismo , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Estudios de Casos y Controles , Femenino , Ferredoxina-NADP Reductasa/genética , Ferredoxina-NADP Reductasa/metabolismo , Enfermedades Fetales/genética , Enfermedades Fetales/metabolismo , Ácido Fólico/análisis , Ácido Fólico/metabolismo , Edad Gestacional , Humanos , Hígado/química , Hígado/embriología , Hígado/enzimología , Masculino , Metilenotetrahidrofolato Reductasa (NADPH2)/genética , Metilenotetrahidrofolato Reductasa (NADPH2)/metabolismo , Defectos del Tubo Neural/embriología , Defectos del Tubo Neural/genética , Defectos del Tubo Neural/metabolismo , Embarazo , Vitamina B 12/análisis
11.
Methods Mol Biol ; 1866: 49-60, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-30725407

RESUMEN

Cancer cells require elevated amounts of methionine (MET) and arrest their growth under conditions of MET restriction (MR). This phenomenon is termed MET dependence. Fluorescence-activated cell sorting (FACS) first indicated that the MET-dependent SV40-transformed cancer cells were arrested in the S and G2 phases of the cell cycle when under MR. This is in contrast to a G1-phase accumulation of cells, which occurs only in MET-supplemented medium at very high cell densities and which is similar to the G1 cell-cycle block which occurs in cultures of normal fibroblasts at high density. When the human PC-3 prostate carcinoma cell line was cultured in MET-free, homocysteine-containing (MET-HCY+) medium, there was an extreme increment in DNA content without cell division indicating that the cells were blocked in S phase. Recombinant methioninase (rMETase) treatment of cancer cells also selectively trapped cancer cells in S/G2: The cell cycle phase of the cancer cells was visualized with the fluorescence ubiquitination cell cycle indicator (FUCCI). At the time of rMETase-induced S/G2-phase trap, identified by the cancer cells' green fluorescence by FUCCI imaging, the cancer cells were administered S-phase-dependent chemotherapy drugs, which interact with DNA or block DNA synthesis such as doxorubicin, cisplatin, or 5-fluorouracil (5-FU) and which were highly effective in killing the cancer cells. In contrast, treatment of cancer cells with drugs in the presence of MET, only led to the majority of the cancer cell population being blocked in G0/G1 phase, identified by the cancer cells becoming red fluorescent in the FUCCI system. The G0/G1 blocked cells were resistant to the chemotherapy. MR has the potential for highly effective cell-cycle-based treatment strategy for cancer in the clinic.


Asunto(s)
Puntos de Control del Ciclo Celular , Metionina/deficiencia , Neoplasias/patología , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Animales , Puntos de Control del Ciclo Celular/efectos de los fármacos , Línea Celular Tumoral , Proliferación Celular/efectos de los fármacos , ADN/metabolismo , Dieta , Fase G2/efectos de los fármacos , Humanos , Ratones Desnudos , Fase S/efectos de los fármacos
12.
Cancer Chemother Pharmacol ; 82(2): 237-243, 2018 08.
Artículo en Inglés | MEDLINE | ID: mdl-29845393

RESUMEN

BACKGROUND: Colorectal cancer (CRC) is one of the major health issues worldwide. 5-Fluorouracil (5-FU) is a cornerstone of chemotherapy for CRC and the major targets of 5-FU are folate-metabolizing enzymes. METHODS: A total of 103 CRC patients with complete clinical data were included in this prospective cohort study. Genotyping was performed using polymerase chain reaction (PCR) followed by sequencing. Using Kaplan-Meier curves, log-rank tests, and Cox proportional hazard models, we evaluated associations between functional polymorphisms in four genes MTHFR (1298A>C and 677C>T), DPYD (496A>G and 85T>C), DHFR 19 bp del, and MTR (2756 A>G) with disease-free survival (DFS). RESULTS: The minor allele frequencies of MTHFR 1298A>C, MTHFR 677C>T, DPYD 496A>G, DPYD 85T>C, DHFR 19 bp del, and MTR 2756 A>G were 0.364, 0.214, 0.116, 0.209, 0.383, and 0.097, respectively. CRC patients carrying the homozygous GG genotype in DPYD 496A>G had 4.36 times shorter DFS than wild-type AA carriers, (DFSGG vs AA: 8.0 ± 4 vs 69.0 ± 10 months; HR 4.36, 95% CI 1.04-18; p = 0.04). Moreover, female carriers of homozygous CC genotype of DPYD 85T>C had shorter DFS compared to either heterozygous or wild-type genotypes, and were 12.7 times shorter than wild-type TT carriers (DFSCC vs TT: 5.0 ± 1.5 vs 42.0 ± 7.6 months; HR 12.7, 95% CI 2.2-71.4; p = 0.004). However, there were no significant associations with the other studied polymorphisms. CONCLUSION: Genetic polymorphism in DPYD seems to be associated with DFS in CRC patients receiving an adjuvant regimen of 5-FU/capecitabine-based chemotherapy. Further studies are needed to verify these findings.


Asunto(s)
Protocolos de Quimioterapia Combinada Antineoplásica/uso terapéutico , Neoplasias Colorrectales/tratamiento farmacológico , Neoplasias Colorrectales/genética , Ácido Fólico/metabolismo , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/genética , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Adulto , Anciano , Capecitabina/administración & dosificación , Quimioterapia Adyuvante , Neoplasias Colorrectales/enzimología , Neoplasias Colorrectales/metabolismo , Dihidrouracilo Deshidrogenasa (NADP)/genética , Dihidrouracilo Deshidrogenasa (NADP)/metabolismo , Femenino , Fluorouracilo/administración & dosificación , Humanos , Masculino , Metilenotetrahidrofolato Reductasa (NADPH2)/genética , Metilenotetrahidrofolato Reductasa (NADPH2)/metabolismo , Persona de Mediana Edad , Polimorfismo de Nucleótido Simple , Tetrahidrofolato Deshidrogenasa/genética , Tetrahidrofolato Deshidrogenasa/metabolismo , Adulto Joven
13.
Nutrients ; 9(6)2017 May 25.
Artículo en Inglés | MEDLINE | ID: mdl-28587068

RESUMEN

Folate and other B vitamins are essential co-factors of one-carbon metabolism, and genetic variants, such as polymorphisms, can alter the metabolism. Furthermore, the adoption of food fortification with folic acid showed a decrease of homocysteine concentration. The aim of this study was to investigate the frequencies of the polymorphisms of enzymes and carrier proteins involved in one-carbon metabolism, and to evaluate homocysteine concentrations in the presence of these genetic variants in a population exposed to mandatory food fortification with folic acid. Using data from a population-based cross-sectional study in São Paulo, Brazil, the study population comprised 750 participants above 12 years of age of both genders. A linear regression model was used to evaluate the homocysteine concentrations according to genetic variants and folate level. The results showed that the minor allelic frequencies were 0.33 for MTHFR (rs1801133), 0.24 for MTHFR (rs1801131), 0.19 for MTR (rs1805087), 0.42 for MTRR (rs1801394), 0.46 for RFC1 (rs1051266), and 0.47 for DHFR (19-bp deletion). The genetic variants of MTHFR 677C>T, MTRR 66A>G and RFC-1 80G>A were different according to race. The homocysteine concentrations increased in the CT and TT compared to CC genotypes of polymorphism MTHFR 677C>T in all populations, and differences between the homocysteine concentrations according to the genotypes of MTHFR 677C>T were observed regardless of folate level.


Asunto(s)
Ferredoxina-NADP Reductasa/metabolismo , Ácido Fólico/farmacología , Homocisteína/sangre , Metilenotetrahidrofolato Reductasa (NADPH2)/metabolismo , Polimorfismo Genético , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/genética , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Estudios Transversales , Encuestas sobre Dietas , Femenino , Ferredoxina-NADP Reductasa/genética , Ácido Fólico/administración & dosificación , Alimentos Fortificados , Genotipo , Humanos , Masculino , Metilenotetrahidrofolato Reductasa (NADPH2)/genética , Persona de Mediana Edad , Proteína de Replicación C/genética , Proteína de Replicación C/metabolismo
14.
J Nutr ; 147(1): 11-19, 2017 01.
Artículo en Inglés | MEDLINE | ID: mdl-27881594

RESUMEN

BACKGROUND: Compared with choline, Met enhances milk yield and feed intake, and elicits a better immuno-metabolic status in periparturient cows. It is unknown whether hepatic activity and transcription of betaine-homocysteine methyltransferase (BHMT), 5-methyltetrahydrofolate-homocysteine methyltransferase (MTR), and cystathionine ß-synthase (CBS) are responsive to Met and choline supply. OBJECTIVE: This study sought to characterize hepatic BHMT, MTR, and CBS transcription and activity in response to Met and choline supplementation. METHODS: Forty multiparous cows were used in a 2 × 2 factorial design from -21 d through 30 d around parturition to assess effects of dietary rumen-protected Met (0% or 0.08% dry matter basis) or rumen-protected choline (0 or 60 g · cow-1 · d-1). Liver tissue obtained on days -10, 7, 20, and 30 was used for analyses. RESULTS: Met-supplemented cows had greater methionine adenosyltransferase 1A (MAT1A) (0.38 compared with 0.27; SEM = 0.05; P = 0.02) and phosphatidylethanolamine methyltransferase (PEMT) (0.74 compared with 0.58; SEM = 0.08; P = 0.05) expression. Greater S-adenosylhomocysteine hydrolase (SAHH) (0.93 compared with 0.74; SEM = 0.05; P = 0.01) and CBS (1.16 compared with 1.02; SEM = 0.07; P = 0.04), as well as lower MTR activity (23.4 compared with 29.7 nmol product · h-1 · mg protein-1; SEM = 2.9; P = 0.04), also were detected in Met- but not choline-supplemented cows. Although BHMT and MTR expression and BHMT enzyme activity did not change (P > 0.05), MTR enzyme activity was lower in choline-supplemented cows (23.5 compared with 29.6 nmol product · h-1 · mg protein-1; SEM = 2.9; P = 0.05). CONCLUSIONS: These findings indicate that greater synthesis of phosphatidylcholine and antioxidants contribute to the better performance and immuno-metabolic status in Met-supplemented cows. Failure to generate a comparable amount of endogenous Met from choline could be one reason that choline-fed cows fail to achieve comparable performance and health benefits during the periparturient period.


Asunto(s)
5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Betaína-Homocisteína S-Metiltransferasa/metabolismo , Bovinos/fisiología , Colina/administración & dosificación , Cistationina betasintasa/metabolismo , Metionina/administración & dosificación , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/genética , Alimentación Animal/análisis , Fenómenos Fisiológicos Nutricionales de los Animales , Animales , Betaína-Homocisteína S-Metiltransferasa/genética , Cistationina betasintasa/genética , Dieta/veterinaria , Femenino , Regulación Enzimológica de la Expresión Génica , Hígado/enzimología , Hígado/metabolismo , Periodo Periparto
15.
Br J Nutr ; 114(6): 844-52, 2015 Sep 28.
Artículo en Inglés | MEDLINE | ID: mdl-26299783

RESUMEN

Folate is an essential B vitamin required for de novo purine and thymidylate synthesis, and for the remethylation of homocysteine to form methionine. Folate deficiency has been associated with placenta-related pregnancy complications, as have SNP in genes of the folate-dependent enzymes, methionine synthase (MTR) and methylenetetrahydrofolate dehydrogenase 1 (MTHFD1). We aimed to determine the effect of altered folate metabolism on placental cell proliferation, viability and invasive capacity and on progesterone and human chorionic gonadotropin (hCG) secretion. Human placental choriocarcinoma (JEG-3) cells cultured in low folic acid (FA) (2 nM) demonstrated 13% (P<0.001) and 26% (P<0.001) lower proliferation, 5.5% (P=0.025) and 7.5% (P=0.004) lower invasion capacity, and 5 to 7.5% (P=0.004-0.025) lower viability compared with control (20 nM) or supplemented (100 nM) cells, respectively. FA concentration had no effect on progesterone or hCG secretion. Small interfering RNA (siRNA) knockdown of MTR gene and protein expression resulted in 17.7% (P<0.0001) lower proliferation and 61% (P=0.014) higher progesterone secretion, but had no effect on cell invasion and hCG secretion. siRNA knockdown of MTHFD1 gene expression in the absence of detectable changes in protein expression resulted in 10.3% (P=0.001) lower cell proliferation, but had no effect on cell invasion and progesterone or hCG secretion. Our data indicate that impaired folate metabolism can result in lower trophoblast proliferation, and could alter viability, invasion capacity and progesterone secretion, which may explain in part the observed associations between folate and placenta-related complications.


Asunto(s)
5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Ácido Fólico/metabolismo , Metilenotetrahidrofolato Deshidrogenasa (NADP)/metabolismo , Placenta/metabolismo , Placentación , Progesterona/metabolismo , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/antagonistas & inhibidores , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/genética , Línea Celular Tumoral , Proliferación Celular , Supervivencia Celular , Coriocarcinoma/metabolismo , Coriocarcinoma/patología , Gonadotropina Coriónica/metabolismo , Femenino , Humanos , Metilenotetrahidrofolato Deshidrogenasa (NADP)/antagonistas & inhibidores , Metilenotetrahidrofolato Deshidrogenasa (NADP)/genética , Antígenos de Histocompatibilidad Menor , Invasividad Neoplásica , Proteínas de Neoplasias/antagonistas & inhibidores , Proteínas de Neoplasias/genética , Proteínas de Neoplasias/metabolismo , Concentración Osmolar , Placenta/citología , Placenta/patología , Embarazo , Interferencia de ARN , ARN Interferente Pequeño , Neoplasias Uterinas/metabolismo , Neoplasias Uterinas/patología
16.
J Trace Elem Med Biol ; 30: 77-82, 2015 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-25467853

RESUMEN

Methionine synthase (MS) and betaine-homocysteine methyltransferase (BHMT) are both zinc (Zn)-dependent methyltransferases and involved in the methylation of homocysteine. The objective of this study was to investigate the effects of dietary Zn supply on homocysteine levels and expression of the two enzymes in growing rats. Male weanling Sprague-Dawley rats were assigned randomly to four dietary groups (n=8/group) for 3 weeks: Zn deficient (ZD; <1mg Zn/kg); Zn control (ZC; 30mg Zn/kg); Zn supplemented (ZS; 300mg Zn/kg); pair fed (PF; 30mg Zn/kg) to the ZD group. Serum and femur Zn concentrations were 83% and 58% lower in ZD, and 49% and 62% higher in ZS compared to ZC (P<0.001), respectively. The ZD rats had lower feed intake (37%), body weight gains (45%), liver (43%) and kidney (31%) weights than those of ZC (P<0.001), but these parameters in ZD were not significantly different from the PF controls. Serum homocysteine concentrations were 65% higher in ZD compared to PF (P<0.05), and there was no significant difference in serum folate levels between ZD and PF groups. The mRNA expression of liver and kidney MS was 57% and 38% lower in ZD than PF (P<0.001), respectively. Hepatic and renal BHMT mRNA levels were not altered in ZD compared to controls. The aforementioned measurements were not significantly different between ZS and ZC groups, except Zn levels. These results demonstrated that homocysteine homeostasis appeared to be disturbed by Zn deficiency but not Zn supplementation, and elevated serum homocysteine might be due to reduced expression of MS during Zn deficiency.


Asunto(s)
5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Betaína-Homocisteína S-Metiltransferasa/metabolismo , Suplementos Dietéticos , Homocisteína/sangre , Zinc/deficiencia , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/genética , Animales , Betaína-Homocisteína S-Metiltransferasa/genética , Peso Corporal , Dieta , Conducta Alimentaria , Ácido Fólico , Regulación Enzimológica de la Expresión Génica , Riñón/enzimología , Hígado/enzimología , Masculino , Tamaño de los Órganos , ARN Mensajero/genética , ARN Mensajero/metabolismo , Ratas Sprague-Dawley , Zinc/sangre
17.
Genet Mol Res ; 13(3): 5025-35, 2014 Jul 04.
Artículo en Inglés | MEDLINE | ID: mdl-25062491

RESUMEN

In Brassicaceae, a self-incompatibility (SI) system mediates pollen-pistil interactions. Self-pollen could be recognized and rejected by incompatible pistils. Several components involved in the SI response have been determined, including S-locus receptor kinase (SRK), S-locus cysteine-rich protein/S-locus protein 11, and arm repeat-containing protein 1 (ARC1). However, the components involved in the SI system of Brassicaceae are not fully understood. Here, we detected expression patterns of 24 SI-related genes in non-heading Chinese cabbage (Brassica campestris ssp chinensis Makino) after compatible and incompatible pollination, and potential interaction relationships of these genes were predicted. SRK and ARC1 transcripts increased initially 0.25 h after incompatible pollination, while kinase-associated protein phosphatase had an expression pattern that was opposite that of SRK transcripts during self-pollination. Plant U-box 8 was not required in the SI response of non-heading Chinese cabbage. Our results showed that the SI signal of non-heading Chinese cabbage could occur within 0.25 h after self-pollination. The hypothetical interaction relationships indicated that plastid-lipid-associated protein and malate dehydrogenase could be negatively regulated by chaperonin 10, glutathione transferase, cytidylate kinase/uridylate kinase, and methionine synthase by indirect interactions. Our findings could be helpful to better understand potential roles of these components in the SI system of non-heading Chinese cabbage.


Asunto(s)
Brassica/genética , Regulación de la Expresión Génica de las Plantas , Glicoproteínas/genética , Proteínas de Plantas/genética , Polinización/genética , Proteínas Quinasas/genética , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/genética , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Brassica/clasificación , Brassica/metabolismo , Chaperonina 10/genética , Chaperonina 10/metabolismo , Flores/genética , Redes Reguladoras de Genes , Glutatión Transferasa/genética , Glutatión Transferasa/metabolismo , Glicoproteínas/metabolismo , Malato Deshidrogenasa/genética , Malato Deshidrogenasa/metabolismo , Metaloendopeptidasas/genética , Metaloendopeptidasas/metabolismo , Nucleósido-Fosfato Quinasa/genética , Nucleósido-Fosfato Quinasa/metabolismo , Fosfoproteínas Fosfatasas/genética , Fosfoproteínas Fosfatasas/metabolismo , Filogenia , Proteínas de Plantas/metabolismo , Polen/genética , Proteínas Quinasas/metabolismo , ARN Mensajero/genética , ARN Mensajero/metabolismo
18.
Plant Physiol ; 165(1): 388-97, 2014 May.
Artículo en Inglés | MEDLINE | ID: mdl-24627342

RESUMEN

Photosynthetic microalgae play a vital role in primary productivity and biogeochemical cycling in both marine and freshwater systems across the globe. However, the growth of these cosmopolitan organisms depends on the bioavailability of nutrients such as vitamins. Approximately one-half of all microalgal species requires vitamin B12 as a growth supplement. The major determinant of algal B12 requirements is defined by the isoform of methionine synthase possessed by an alga, such that the presence of the B12-independent methionine synthase (METE) enables growth without this vitamin. Moreover, the widespread but phylogenetically unrelated distribution of B12 auxotrophy across the algal lineages suggests that the METE gene has been lost multiple times in evolution. Given that METE expression is repressed by the presence of B12, prolonged repression by a reliable source of the vitamin could lead to the accumulation of mutations and eventually gene loss. Here, we probe METE gene regulation by B12 and methionine/folate cycle metabolites in both marine and freshwater microalgal species. In addition, we identify a B12-responsive element of Chlamydomonas reinhardtii METE using a reporter gene approach. We show that complete repression of the reporter occurs via a region spanning -574 to -90 bp upstream of the METE start codon. A proteomics study reveals that two other genes (S-Adenosylhomocysteine hydrolase and Serine hydroxymethyltransferase2) involved in the methionine-folate cycle are also repressed by B12 in C. reinhardtii. The strong repressible nature and high sensitivity of the B12-responsive element has promising biotechnological applications as a cost-effective regulatory gene expression tool.


Asunto(s)
Regulación de la Expresión Génica de las Plantas/efectos de los fármacos , Microalgas/genética , Vitamina B 12/farmacología , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/química , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/genética , 5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Secuencia de Aminoácidos , Chlamydomonas/efectos de los fármacos , Chlamydomonas/genética , Genes Reporteros , Microalgas/efectos de los fármacos , Microalgas/enzimología , Datos de Secuencia Molecular , Proteómica , Elementos de Respuesta/genética
19.
J Nutr Sci Vitaminol (Tokyo) ; 59(3): 238-42, 2013.
Artículo en Inglés | MEDLINE | ID: mdl-23883695

RESUMEN

The influence of maternal vitamin B12 malnutrition on testicular development of offspring was examined using soy protein-based B12-deficient diets with or without 0.5% DL-methionine supplementation. Dams were fed the B12-deficient diet throughout gestation and lactation, whereas dams in a control group were fed a control diet which contained cyanocobalamin in the B12-deficient diet without methionine. Offspring born to dams fed the B12-deficient diet without methionine showed poor testicular development, e.g. decreased numbers of seminiferous tubules containing healthy spermatocytes and a high ratio of apoptotic cells per all germ cells. The abnormality was rarely observed in the group fed the B12-deficient diet with methionine. It was likely that the testicular abnormality of offspring was caused by B12-deficiency post partum and was prevented by the methionine supplementation. These observations suggested that maternal B12 nutritional status during the pre-weaning period is quite important for spermatogenesis of male offspring and that the requirement of B12 for testicular development is to produce active B12-dependent methionine synthase.


Asunto(s)
5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Lactancia , Fenómenos Fisiologicos Nutricionales Maternos , Metionina/uso terapéutico , Testículo/crecimiento & desarrollo , Deficiencia de Vitamina B 12/complicaciones , Vitamina B 12/administración & dosificación , Animales , Animales Recién Nacidos , Dieta , Suplementos Dietéticos , Femenino , Masculino , Metionina/farmacología , Estado Nutricional , Embarazo , Efectos Tardíos de la Exposición Prenatal , Fenómenos Fisiologicos de la Nutrición Prenatal , Ratas , Ratas Wistar , Espermatogénesis , Enfermedades Testiculares/enzimología , Enfermedades Testiculares/etiología , Enfermedades Testiculares/prevención & control , Testículo/anomalías , Testículo/efectos de los fármacos , Deficiencia de Vitamina B 12/tratamiento farmacológico , Complejo Vitamínico B/administración & dosificación
20.
Biosci Biotechnol Biochem ; 77(2): 378-80, 2013.
Artículo en Inglés | MEDLINE | ID: mdl-23391913

RESUMEN

We attempted to clarify the reason why folate fortification ameliorates hyperhomocysteinemia induced by vitamin B(6) deficiency. Hyperhomocysteinemia caused by vitamin B(6) deficiency significantly decreased the rat liver 5-methyltetrahydrofolate level which was significantly improved by folate fortification. This result suggests that the amelioration of hyperhomocysteinemia in response to folate supplementation had enhanced the removal of homocysteine via methionine synthase.


Asunto(s)
5-Metiltetrahidrofolato-Homocisteína S-Metiltransferasa/metabolismo , Suplementos Dietéticos , Hiperhomocisteinemia/metabolismo , Metionina/metabolismo , Tetrahidrofolatos/metabolismo , Deficiencia de Vitamina B 6/metabolismo , Animales , Homocisteína/metabolismo , Hiperhomocisteinemia/dietoterapia , Hiperhomocisteinemia/etiología , Hígado/efectos de los fármacos , Hígado/metabolismo , Masculino , Metionina/administración & dosificación , Ratas , Ratas Wistar , Tetrahidrofolatos/administración & dosificación , Vitamina B 6/metabolismo , Deficiencia de Vitamina B 6/complicaciones , Deficiencia de Vitamina B 6/dietoterapia
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