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Distinct roles for α-β hydrolase domain 5 (ABHD5/CGI-58) and adipose triglyceride lipase (ATGL/PNPLA2) in lipid metabolism and signaling

机译:α-β水解酶结构域5(ABHD5 / CGI-58)和脂肪甘油三酸酯脂酶(ATGL / PNPLA2)在脂质代谢和信号传导中的不同作用

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摘要

Catabolism of stored triacylglycerol (TAG) from cytoplasmic lipid droplets is critical for providing energy substrates, membrane building blocks and signaling lipids in most cells of the body. However, the lipolytic machinery dictating TAG hydrolysis varies greatly among different cell types. Within the adipocyte, TAG hydrolysis is dynamically regulated by hormones to ensure appropriate metabolic adaptation to nutritional and physiologic cues. In other cell types such as hepatocytes, myocytes and macrophages, mobilization of stored TAG is regulated quite differently. Within the last decade, mutations in two key genes involved in TAG hydrolysis, α-β hydrolase domain 5 (ABHD5/CGI-58) and adipose triglyceride lipase (ATGL/PNPLA2), were found to cause two distinct neutral lipid storage diseases (NLSD) in humans. These genetic links, along with supporting evidence in mouse models, have prompted a number of studies surrounding the biochemical function(s) of these proteins. Although both CGI-58 and ATGL have been clearly implicated in TAG hydrolysis in multiple tissues and have even been shown to physically interact with each other, recent evidence suggests that they may also have distinct roles. The purpose of this review is to summarize the most recent insights into how CGI-58 and ATGL regulate lipid metabolism and signaling.
机译:来自细胞质脂质小滴的储存的三酰基甘油(TAG)的分解代谢对于在人体的大多数细胞中提供能量底物,膜结构单元和信号脂质至关重要。但是,指示TAG水解的脂解机制在不同细胞类型之间差异很大。在脂肪细胞内,TAG水解受激素动态调节,以确保适当的代谢适应营养和生理学提示。在其他类型的细胞(例如肝细胞,肌细胞和巨噬细胞)中,存储的TAG的动员受到完全不同的调节。在过去十年中,发现与TAG水解有关的两个关键基因α-β水解酶结构域5(ABHD5 / CGI-58)和脂肪甘油三酸酯脂酶(ATGL / PNPLA2)的突变引起两种不同的中性脂质贮积病(NLSD) )。这些遗传联系以及小鼠模型中的支持证据,促使人们围绕这些蛋白质的生化功能开展了许多研究。尽管CGI-58和ATGL都明显参与了多个组织中的TAG水解,甚至已被证明彼此发生物理相互作用,但最近的证据表明它们也可能具有不同的作用。这篇综述的目的是总结关于CGI-58和ATGL如何调节脂质代谢和信号传导的最新见解。

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