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首页> 外文期刊>American Journal of Physiology >Differential epigenetic and transcriptional response of the skeletal muscle carnitine palmitoyltransferase IB (CPT1B) gene to lipid exposure with obesity
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Differential epigenetic and transcriptional response of the skeletal muscle carnitine palmitoyltransferase IB (CPT1B) gene to lipid exposure with obesity

机译:骨骼肌肉碱肉豆蔻酰棕榈酰丙酰丙烷酶IB(CPT1B)基因与肥胖暴露的差异表观遗传响应

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摘要

The ability to increase fatty acid oxidation (FAO) in response to dietary lipid is impaired in the skeletal muscle of obese individuals, which is associated with a failure to coordinately upregulate genes involved with FAO. While the molecular mechanisms contributing to this metabolic inflexibility are not evident, a possible candidate is carnitine palmitoyltransf erase-IB (CPT1B), which is a rate-limiting step in FAO. The present study was undertaken to determine if the differential response of skeletal muscle CPT1B gene transcription to lipid between lean and severely obese subjects is linked to epigenetic modifications (DNA methylation and histone acetylation) that impact transcriptional activation. In primary human skeletal muscle cultures the expression of CPT1B was blunted in severely obese women compared with their lean counterparts in response to lipid, which was accompanied by changes in CpG methylation, H3/H4 histone acetylation, and peroxisome proliferator-activated receptor-8 and hepatp-cyte nuclear factor 4a transcription factor occupancy at the CPT1B promoter. Methylation of specific CpG sites in the CPT1B promoter that correlated with CPT1B transcript level blocked the binding of the transcription factor upstream stimulatory factor, suggesting a potential causal mechanism. These findings indicate that epigenetic modifications may play important roles in the regulation of CPT1B in response to a physiologically relevant lipid mixture in human skeletal muscle, a major site of fatty acid catabolism, and that differential DNA methylation may underlie the depressed expression of CPT1B in response to lipid, contributing to the metabolic inflexibility associated with severe obesity.
机译:在肥胖个体的骨骼肌中增加脂肪酸氧化(粮农组织)的能力在肥胖个体的骨骼肌中受到损害,这与未能协调与粮农组织相关的基因有关。虽然有助于这种代谢屈服性的分子机制并不明显,但是一种可能的候选者是肉毒氨酸棕榈酰到腐蚀 - IB(CPT1B),这是粮农组织的速率限制步骤。进行本研究以确定骨骼肌CPT1B基因转录对瘦和严重肥胖受试者之间脂质的差异响应是否与影响转录激活的表观遗传修饰(DNA甲基化和组酸酯乙酰化)相关联。在原发性人骨骼肌培养中,与脂质的瘦妇女相比,在严重的肥胖女性中,CPT1B的表达与脂质相比,其依次伴随着CpG甲基化,H3 / H4组蛋白乙酰化和过氧化物酶促增生剂活化受体-8和过氧化物体增殖物激活的受体-8和Hepatp-cyte核因子4a转录因子在CPT1B启动子上占用。 CPT1B促进剂中特异性CpG位点的甲基化,其与CPT1B转录物水平相关,阻断了转录因子上游刺激因子的结合,表明潜在的因果机制。这些发现表明,表观遗传修饰可能在CPT1B的调节中发挥重要作用,响应于人体骨骼肌中的生理相关的脂质混合物,脂肪酸分解代谢的主要部位,并且差动DNA甲基化可能使CPT1B的抑制表达响应响应对脂质,有助于与严重肥胖相关的代谢粘度。

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