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1.
J Biol Chem ; 299(8): 104986, 2023 08.
Artículo en Inglés | MEDLINE | ID: mdl-37392854

RESUMEN

Congenital hyperinsulinism of infancy (CHI) can be caused by a deficiency of the ubiquitously expressed enzyme short-chain 3-hydroxyacyl-CoA dehydrogenase (SCHAD). To test the hypothesis that SCHAD-CHI arises from a specific defect in pancreatic ß-cells, we created genetically engineered ß-cell-specific (ß-SKO) or hepatocyte-specific (L-SKO) SCHAD knockout mice. While L-SKO mice were normoglycemic, plasma glucose in ß-SKO animals was significantly reduced in the random-fed state, after overnight fasting, and following refeeding. The hypoglycemic phenotype was exacerbated when the mice were fed a diet enriched in leucine, glutamine, and alanine. Intraperitoneal injection of these three amino acids led to a rapid elevation in insulin levels in ß-SKO mice compared to controls. Consistently, treating isolated ß-SKO islets with the amino acid mixture potently enhanced insulin secretion compared to controls in a low-glucose environment. RNA sequencing of ß-SKO islets revealed reduced transcription of ß-cell identity genes and upregulation of genes involved in oxidative phosphorylation, protein metabolism, and Ca2+ handling. The ß-SKO mouse offers a useful model to interrogate the intra-islet heterogeneity of amino acid sensing given the very variable expression levels of SCHAD within different hormonal cells, with high levels in ß- and δ-cells and virtually absent α-cell expression. We conclude that the lack of SCHAD protein in ß-cells results in a hypoglycemic phenotype characterized by increased sensitivity to amino acid-stimulated insulin secretion and loss of ß-cell identity.


Asunto(s)
3-Hidroxiacil-CoA Deshidrogenasa , Aminoácidos , Hiperinsulinismo Congénito , Hipoglucemia , Secreción de Insulina , Células Secretoras de Insulina , Animales , Ratones , Aminoácidos/metabolismo , Aminoácidos/farmacología , Hipoglucemia/enzimología , Hipoglucemia/genética , Insulina/metabolismo , Secreción de Insulina/efectos de los fármacos , Ratones Noqueados , 3-Hidroxiacil-CoA Deshidrogenasa/deficiencia , 3-Hidroxiacil-CoA Deshidrogenasa/genética , Células Secretoras de Insulina/enzimología , Hiperinsulinismo Congénito/genética
2.
FASEB J ; 36(12): e22661, 2022 12.
Artículo en Inglés | MEDLINE | ID: mdl-36398584

RESUMEN

The process of spermatogenesis is a complex and delicate process that is still not fully understood. In this study, we examined the role of fatty acid oxidase 3-hydroxy acyl CoA dehydrogenase (HADH) in maintaining normal spermatogenesis in mice. In male mice, ablation of the Hadh gene using CRISPR/Cas9 technology arrested spermatocyte meiosis, increased multinucleated giant germ cells and vacuoles in seminiferous tubules, and accompanied with acrosomal dysplasia. Hadh-/- male mice showed the typical features of oligoasthenoteratozoospermia (OAT), including decreased sperm concentration and motility and increased sperm abnormalities. Next, we explored the molecular events in the testes of the mutant mice. We found fatty acids accumulated in the testis of Hadh-/- mice. And also, inflammatory factors TNF-α, IL-1ß, and IL-6 were significantly increased, apoptosis-related protein Bcl-2 was decreased, and Bax and cleaved-Caspase3 were increased in Hadh-/- male mice testis. After using etanercept, a specific inhibitor of TNF-α, testis injury caused by Hadh knockout was significantly alleviated, the sperm quality and motility were improved, and germ cell apoptosis was reduced. So our study demonstrated that Hadh deletion caused an increase in fatty acids. The accumulated fatty acids further induced testicular inflammation and germ cell apoptosis through the TNF-α/Bcl-2 signaling pathway, finally resulting in OAT in the Hadh-/- mice. Inhibiting TNF-α may be used as a new treatment approach for testicular inflammation and OAT.


Asunto(s)
3-Hidroxiacil-CoA Deshidrogenasa , Astenozoospermia , Infertilidad Masculina , Oligospermia , Animales , Masculino , Ratones , Astenozoospermia/genética , Astenozoospermia/metabolismo , Ácidos Grasos , Infertilidad Masculina/genética , Infertilidad Masculina/metabolismo , Inflamación/genética , Inflamación/metabolismo , Oligospermia/genética , Oligospermia/metabolismo , Semen/metabolismo , Espermatocitos/metabolismo , Factor de Necrosis Tumoral alfa/genética , Factor de Necrosis Tumoral alfa/metabolismo , 3-Hidroxiacil-CoA Deshidrogenasa/deficiencia , 3-Hidroxiacil-CoA Deshidrogenasa/genética , 3-Hidroxiacil-CoA Deshidrogenasa/metabolismo , Genes bcl-2/genética , Genes bcl-2/fisiología
3.
Am J Gastroenterol ; 112(6): 838-846, 2017 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-28291236

RESUMEN

Acute fatty liver of pregnancy (AFLP) is an obstetric emergency characterized by maternal liver failure and may have complications for the mother and fetus, including death. This review examines recent literature on the epidemiology, pathogenesis, diagnosis, and treatment of acute fatty liver of pregnancy. Pathogenesis of this disease has been linked to defects in fatty acid metabolism during pregnancy, especially in the setting of fetal genetic defects in fatty acid oxidation. The value of screening all patients for these genetic defects remains to be determined. Distinguishing AFLP from other high-risk liver diseases of pregnancy that have overlap features, such as HELLP and preeclampsia, can be challenging. Although sensitive diagnostic tools such as the Swansea criteria have been developed, further work is needed to diagnose AFLP more quickly. Although survival rates have improved in the past 30 years, delay in diagnosis and treatment of AFLP has life-threatening consequences; an algorithmic approach to AFLP may be a valuable resource for clinicians. Future epidemiological and long-term studies will improve our prediction of women at risk for developing AFLP and determine the long-term consequences of this condition.


Asunto(s)
3-Hidroxiacil-CoA Deshidrogenasa/deficiencia , Hígado Graso/diagnóstico , Hígado Graso/genética , Enfermedades Fetales/fisiopatología , Complicaciones del Embarazo/diagnóstico , Complicaciones del Embarazo/genética , 3-Hidroxiacil-CoA Deshidrogenasa/genética , Enfermedad Aguda , Diagnóstico Diferencial , Hígado Graso/epidemiología , Hígado Graso/terapia , Femenino , Enfermedades Fetales/diagnóstico , Enfermedades Fetales/enzimología , Humanos , Fallo Hepático Agudo/etiología , Embarazo , Complicaciones del Embarazo/epidemiología , Complicaciones del Embarazo/terapia , Factores de Riesgo
4.
Diabetes ; 65(6): 1672-8, 2016 06.
Artículo en Inglés | MEDLINE | ID: mdl-26953163

RESUMEN

Congenital hyperinsulinism of infancy (CHI) can be caused by inactivating mutations in the gene encoding short-chain 3-hydroxyacyl-CoA dehydrogenase (SCHAD), a ubiquitously expressed enzyme involved in fatty acid oxidation. The hypersecretion of insulin may be explained by a loss of interaction between SCHAD and glutamate dehydrogenase in the pancreatic ß-cells. However, there is also a general accumulation of metabolites specific for the enzymatic defect in affected individuals. It remains to be explored whether hypoglycemia in SCHAD CHI can be uncoupled from the systemic effect on fatty acid oxidation. We therefore transplanted islets from global SCHAD knockout (SCHADKO) mice into mice with streptozotocin-induced diabetes. After transplantation, SCHADKO islet recipients exhibited significantly lower random and fasting blood glucose compared with mice transplanted with normal islets or nondiabetic, nontransplanted controls. Furthermore, intraperitoneal glucose tolerance was improved in animals receiving SCHADKO islets compared with those receiving normal islets. Graft ß-cell proliferation and apoptosis rates were similar in the two transplantation groups. We conclude that hypoglycemia in SCHAD-CHI is islet cell-autonomous.


Asunto(s)
3-Hidroxiacil-CoA Deshidrogenasa/deficiencia , Hiperinsulinismo Congénito/enzimología , Hipoglucemia/enzimología , Células Secretoras de Insulina/metabolismo , Fenotipo , Animales , Hiperinsulinismo Congénito/genética , Glutamato Deshidrogenasa/metabolismo , Hipoglucemia/genética , Insulina/metabolismo , Secreción de Insulina , Masculino , Ratones , Ratones Noqueados
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