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自噬在脂质代谢中的经典作用和替代作用。

Classical and alternative roles for autophagy in lipid metabolism.

机构信息

Cardiovascular Division, Department of Medicine.

John Cochran VA Medical Center, St. Louis, Missouri, USA.

出版信息

Curr Opin Lipidol. 2018 Jun;29(3):203-211. doi: 10.1097/MOL.0000000000000509.

DOI:10.1097/MOL.0000000000000509
PMID:29601311
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5930069/
Abstract

PURPOSE OF REVIEW

Intracellular lipid metabolism is a complex interplay of exogenous lipid handling, trafficking, storage, lipolysis, and export. Recent work has implicated the cellular degradative process called autophagy in several aspects of lipid metabolism. We will discuss both the classical and novel roles of autophagy and the autophagic machinery in this setting.

RECENT FINDINGS

The delivery of lipid droplets to lysosomes for hydrolysis, named lipophagy, was the first described functional role for autophagy in lipid metabolism. The molecular machinery and regulation of this selective form of macroautophagy is beginning to be discovered and has the potential to shed enormous light on intracellular lipolysis. Yet, the autophagic machinery appears to also be coopted for alternative roles that include interaction with cytosolic lipolysis pathways, supply and expansion of lipid droplets, and lipoprotein trafficking. Additionally, lesser studied forms of autophagy called microautophagy and chaperone-mediated autophagy have distinct roles in lipid handling that also intersect with classical macroautophagy. The integration of current knowledge in these areas into a holistic understanding of intracellular lipid metabolism will be a goal of this review.

SUMMARY

As the field of autophagy has evolved and expanded to include functional roles in various aspects of cellular degradation, so has its role in intracellular lipid metabolism. Understanding the mechanisms underlying these classical and alternative roles of autophagy will not only enhance our knowledge in lipid biology but also provide new avenues of translation to human lipid disorders.

摘要

目的综述

细胞内脂质代谢是外源性脂质处理、运输、储存、脂解和输出的复杂相互作用。最近的研究表明,细胞降解过程自噬在脂质代谢的几个方面起作用。我们将讨论自噬及其在这种情况下的自噬机制的经典和新作用。

最近的发现

将脂滴递送到溶酶体进行水解,称为脂噬,这是自噬在脂质代谢中首次被描述的功能作用。这种选择性形式的巨自噬的分子机制和调节开始被发现,并有可能极大地阐明细胞内脂解。然而,自噬机制似乎也被篡夺用于替代作用,包括与细胞质脂解途径相互作用、供应和扩展脂滴以及脂蛋白运输。此外,较少研究的自噬形式,如微自噬和伴侣介导的自噬,在脂质处理中具有独特的作用,也与经典的巨自噬交叉。将这些领域的当前知识整合到细胞内脂质代谢的整体理解中,将是本综述的目标。

总结

随着自噬领域的发展和扩展,包括在细胞降解的各个方面的功能作用,它在细胞内脂质代谢中的作用也在扩展。了解自噬的这些经典和替代作用的机制不仅将增强我们在脂质生物学方面的知识,而且还将为人类脂质紊乱的转化提供新途径。

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DGAT1-Dependent Lipid Droplet Biogenesis Protects Mitochondrial Function during Starvation-Induced Autophagy.
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