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Biochemistry and pathophysiology of intravascular and intracellular lipolysis

机译:血管内和细胞内脂解的生物化学和病理生理学

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摘要

All organisms use fatty acids (FAs) for energy substrates and as precursors for membrane and signaling lipids. The most efficient way to transport and store FAs is in the form of triglycerides (TGs); however, TGs are not capable of traversing biological membranes and therefore need to be cleaved by TG hydrolases ("lipases") before moving in or out of cells. This biochemical process is generally called "lipolysis". Intravascular lipolysis degrades lipoprotein- associated TGs to FAs for their subsequent uptake by parenchymal cells, whereas intracellular lipolysis generates FAs and glycerol for their release (in the case of white adipose tissue) or use by cells (in the case of other tissues). Although the importance of lipolysis has been recognized for decades, many of the key proteins involved in lipolysis have been uncovered only recently. Important new developments include the discovery of glycosylphosphatidylinositol-anchored high-density lipoprotein- binding protein 1 (GPIHBP1), the molecule that moves lipoprotein lipase from the interstitial spaces to the capillary lumen, and the discovery of adipose triglyceride lipase (ATGL) and comparative gene identification- 58 (CGI-58) as crucial molecules in the hydrolysis of TGs within cells. This review summarizes current views of lipolysis and highlights the relevance of this process to human disease. ? 2013 by Cold Spring Harbor Laboratory Press.
机译:所有生物都将脂肪酸(FAs)用作能量底物,并用作膜和信号脂质的前体。运输和储存脂肪酸的最有效方法是甘油三酸酯(TGs)形式。然而,TG不能穿过生物膜,因此在移入或移出细胞之前需要被TG水解酶(“脂肪酶”)裂解。该生化过程通常称为“脂解”。血管内脂解作用将脂蛋白相关的TGs降解为FAs,供随后的实质细胞吸收,而细胞内脂解作用则生成FAs和甘油以释放它们(对于白色脂肪组织)或被细胞使用(对于其他组织)。尽管脂肪分解的重要性已经被认识了几十年,但是参与脂肪分解的许多关键蛋白质直到最近才被发现。重要的新进展包括糖基磷脂酰肌醇固定的高密度脂蛋白结合蛋白1(GPIHBP1)的发现,脂蛋白脂肪酶从间质空间移动到毛细血管腔的分子以及脂肪甘油三酸酯脂酶(ATGL)和比较基因的发现鉴定58(CGI-58)是细胞内TG水解的关键分子。这篇综述总结了目前对脂肪分解的看法,并强调了该过程与人类疾病的相关性。 ? 2013年,冷泉港实验室出版社。

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