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1.
Nat Commun ; 15(1): 45, 2024 01 02.
Artículo en Inglés | MEDLINE | ID: mdl-38167725

RESUMEN

Dietary polyunsaturated fatty acids (PUFA) are increasingly recognized for their health benefits, whereas a high production of endogenous fatty acids - a process called de novo lipogenesis (DNL) - is closely linked to metabolic diseases. Determinants of PUFA incorporation into complex lipids are insufficiently understood and may influence the onset and progression of metabolic diseases. Here we show that fatty acid synthase (FASN), the key enzyme of DNL, critically determines the use of dietary PUFA in mice and humans. Moreover, the combination of FASN inhibition and PUFA-supplementation decreases liver triacylglycerols (TAG) in mice fed with high-fat diet. Mechanistically, FASN inhibition causes higher PUFA uptake via the lysophosphatidylcholine transporter MFSD2A, and a diacylglycerol O-acyltransferase 2 (DGAT2)-dependent incorporation of PUFA into TAG. Overall, the outcome of PUFA supplementation may depend on the degree of endogenous DNL and combining PUFA supplementation and FASN inhibition might be a promising approach to target metabolic disease.


Asunto(s)
Ácidos Grasos Omega-3 , Enfermedades Metabólicas , Ratones , Humanos , Animales , Lipogénesis , Ácidos Grasos Omega-3/farmacología , Ácidos Grasos Omega-3/metabolismo , Ácidos Grasos Insaturados , Triglicéridos/metabolismo , Ácidos Grasos , Dieta Alta en Grasa/efectos adversos
2.
Amino Acids ; 52(1): 73-85, 2020 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-31853708

RESUMEN

Statin-induced myopathy affects more than 10 million people worldwide. But discontinuation of statin treatment increases mortality and cardiovascular events. Recently, L-arginine:glycine amidinotransferase (AGAT) gene was associated with statin-induced myopathy in two populations, but the causal link is still unclear. AGAT is responsible for the synthesis of L-homoarginine (hArg) and guanidinoacetate (GAA). GAA is further methylated to creatine (Cr) by guanidinoacetate methyltransferase (GAMT). In cerebrovascular patients treated with statin, lower hArg and GAA plasma concentrations were found than in non-statin patients, indicating suppressed AGAT expression and/or activity (n = 272, P = 0.033 and P = 0.039, respectively). This observation suggests that statin-induced myopathy may be associated with AGAT expression and/or activity in muscle cells. To address this, we studied simvastatin-induced myopathy in AGAT- and GAMT-deficient mice. We found that simvastatin induced muscle damage and reduced AGAT expression in wildtype mice (myocyte diameter: 34.1 ± 1.3 µm vs 21.5 ± 1.3 µm, P = 0.026; AGAT expression: 1.0 ± 0.3 vs 0.48 ± 0.05, P = 0.017). Increasing AGAT expression levels of transgenic mouse models resulted in rising plasma levels of hArg and GAA (P < 0.01 and P < 0.001, respectively). Simvastatin-induced motor impairment was exacerbated in AGAT-deficient mice compared with AGAT-overexpressing GAMT-/- mice and therefore revealed an effect independent of Cr. But Cr supplementation itself improved muscle strength independent of AGAT expression (normalized grip strength: 55.8 ± 2.9% vs 72.5% ± 3.0%, P < 0.01). Homoarginine supplementation did not affect statin-induced myopathy in AGAT-deficient mice. Our results from clinical and animal studies suggest that AGAT expression/activity and its product Cr influence statin-induced myopathy independent of each other. The interplay between simvastatin treatment, AGAT expression and activity, and Cr seems to be complex. Further clinical pharmacological studies are needed to elucidate the underlying mechanism(s) and to evaluate whether supplementation with Cr, or possibly GAA, in patients under statin medication may reduce the risk of muscular side effects.


Asunto(s)
Metilasas de Modificación del ADN/genética , Enzimas Reparadoras del ADN/genética , Guanidinoacetato N-Metiltransferasa/genética , Músculo Esquelético/efectos de los fármacos , Simvastatina/farmacología , Proteínas Supresoras de Tumor/genética , Animales , Arginina/metabolismo , Creatina/metabolismo , Metilasas de Modificación del ADN/antagonistas & inhibidores , Enzimas Reparadoras del ADN/antagonistas & inhibidores , Regulación de la Expresión Génica/efectos de los fármacos , Guanidinoacetato N-Metiltransferasa/deficiencia , Homoarginina/metabolismo , Humanos , Ratones , Músculo Esquelético/metabolismo , Fenotipo , Proteínas Supresoras de Tumor/antagonistas & inhibidores
3.
J Clin Neurosci ; 50: 237-241, 2018 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-29396070

RESUMEN

l-homoarginine (l-hArg) is an endogenous non-proteinogenic amino acid. Low l-hArg concentrations are associated with increased all-cause mortality, fatal strokes, and worse outcome after stroke. On the other hand, oral supplementation with l-hArg in mice improved neurological deficits and preserved cardiac function in experimental models of stroke and heart failure, respectively. Recently, oral supplementation with 125 mg daily l-hArg capsules in healthy volunteers demonstrated increased l-hArg plasma levels. Therefore, oral l-hArg supplementation could represent a potential treatment for patients with cerebrovascular disease. In addition to vascular physiology, animal studies have suggested that l-hArg might play a role in synapse function, neurotransmitter metabolism and cognitive training. However the direct influence of l-hArg on cognitive function has not been studied so far. In this study, cognitive performance in healthy humans was analyzed concerning memory, learning, and attention following supplementation with placebo or l-hArg for 4 weeks. Our results did not reveal any effects on cognition, neither impairment nor improvement, upon l-hArg supplementation. Therefore, potential l-hArg treatment is not expected to cause any acute neurocognitive or behavioral side effects.


Asunto(s)
Cognición/efectos de los fármacos , Suplementos Dietéticos , Homoarginina/farmacología , Adulto , Estudios Cruzados , Método Doble Ciego , Femenino , Voluntarios Sanos , Homoarginina/sangre , Humanos , Masculino
4.
Hum Mol Genet ; 22(1): 110-23, 2013 Jan 01.
Artículo en Inglés | MEDLINE | ID: mdl-23026748

RESUMEN

Phosphorylated creatine (Cr) serves as an energy buffer for ATP replenishment in organs with highly fluctuating energy demand. The central role of Cr in the brain and muscle is emphasized by severe neurometabolic disorders caused by Cr deficiency. Common symptoms of inborn errors of creatine synthesis or distribution include mental retardation and muscular weakness. Human mutations in l-arginine:glycine amidinotransferase (AGAT), the first enzyme of Cr synthesis, lead to severely reduced Cr and guanidinoacetate (GuA) levels. Here, we report the generation and metabolic characterization of AGAT-deficient mice that are devoid of Cr and its precursor GuA. AGAT-deficient mice exhibited decreased fat deposition, attenuated gluconeogenesis, reduced cholesterol levels and enhanced glucose tolerance. Furthermore, Cr deficiency completely protected from the development of metabolic syndrome caused by diet-induced obesity. Biochemical analyses revealed the chronic Cr-dependent activation of AMP-activated protein kinase (AMPK), which stimulates catabolic pathways in metabolically relevant tissues such as the brain, skeletal muscle, adipose tissue and liver, suggesting a mechanism underlying the metabolic phenotype. In summary, our results show marked metabolic effects of Cr deficiency via the chronic activation of AMPK in a first animal model of AGAT deficiency. In addition to insights into metabolic changes in Cr deficiency syndromes, our genetic model reveals a novel mechanism as a potential treatment option for obesity and type 2 diabetes mellitus.


Asunto(s)
Amidinotransferasas/genética , Síndrome Metabólico/genética , Adenilato Quinasa/metabolismo , Tejido Adiposo , Animales , Peso Corporal , Encéfalo/metabolismo , Creatina/metabolismo , Activación Enzimática , Hipotálamo/enzimología , Espectroscopía de Resonancia Magnética , Síndrome Metabólico/enzimología , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Mutación
5.
J Clin Invest ; 111(10): 1537-45, 2003 May.
Artículo en Inglés | MEDLINE | ID: mdl-12750403

RESUMEN

The cardiac pacemaker current I(f) is a major determinant of diastolic depolarization in sinus nodal cells and has a key role in heartbeat generation. Therefore, we hypothesized that some forms of "idiopathic" sinus node dysfunction (SND) are related to inherited dysfunctions of cardiac pacemaker ion channels. In a candidate gene approach, a heterozygous 1-bp deletion (1631delC) in exon 5 of the human HCN4 gene was detected in a patient with idiopathic SND. The mutant HCN4 protein (HCN4-573X) had a truncated C-terminus and lacked the cyclic nucleotide-binding domain. COS-7 cells transiently transfected with HCN4-573X cDNA indicated normal intracellular trafficking and membrane integration of HCN4-573X subunits. Patch-clamp experiments showed that HCN4-573X channels mediated I(f)-like currents that were insensitive to increased cellular cAMP levels. Coexpression experiments showed a dominant-negative effect of HCN4-573X subunits on wild-type subunits. These data indicate that the cardiac I(f) channels are functionally expressed but with altered biophysical properties. Taken together, the clinical, genetic, and in vitro data provide a likely explanation for the patient's sinus bradycardia and the chronotropic incompetence.


Asunto(s)
Arritmia Sinusal/diagnóstico , Fibrilación Atrial/diagnóstico , Bradicardia/diagnóstico , Canales Iónicos/genética , Proteínas Musculares/genética , Anciano , Animales , Arritmia Sinusal/complicaciones , Arritmia Sinusal/genética , Fibrilación Atrial/complicaciones , Fibrilación Atrial/genética , Bradicardia/complicaciones , Bradicardia/genética , Células COS , AMP Cíclico/metabolismo , Canales Catiónicos Regulados por Nucleótidos Cíclicos , Análisis Mutacional de ADN , Electrocardiografía , Técnicas Electrofisiológicas Cardíacas , Electrofisiología , Exones , Femenino , Frecuencia Cardíaca/genética , Humanos , Canales Regulados por Nucleótidos Cíclicos Activados por Hiperpolarización , Intrones , Canales Iónicos/biosíntesis , Proteínas Musculares/biosíntesis , Mutación , Técnicas de Placa-Clamp , Canales de Potasio , Subunidades de Proteína/biosíntesis , Subunidades de Proteína/genética , Transporte de Proteínas , Síncope/etiología , Transfección
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