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哺乳动物脂滴:结构、病理、免疫和解毒作用。

Mammalian lipid droplets: structural, pathological, immunological and anti-toxicological roles.

机构信息

Department of Animal Biology, Faculty of Sciences, University of Damascus, Damascus, Syria.

School of Applied Sciences, University of South Wales, Pontypridd, CF37 1DL, Wales, United Kingdom..

出版信息

Prog Lipid Res. 2023 Jul;91:101233. doi: 10.1016/j.plipres.2023.101233. Epub 2023 May 6.

Abstract

Mammalian lipid droplets (LDs) are specialized cytosolic organelles consisting of a neutral lipid core surrounded by a membrane made up of a phospholipid monolayer and a specific population of proteins that varies according to the location and function of each LD. Over the past decade, there have been significant advances in the understanding of LD biogenesis and functions. LDs are now recognized as dynamic organelles that participate in many aspects of cellular homeostasis plus other vital functions. LD biogenesis is a complex, highly-regulated process with assembly occurring on the endoplasmic reticulum although aspects of the underpinning molecular mechanisms remain elusive. For example, it is unclear how many enzymes participate in the biosynthesis of the neutral lipid components of LDs and how this process is coordinated in response to different metabolic cues to promote or suppress LD formation and turnover. In addition to enzymes involved in the biosynthesis of neutral lipids, various scaffolding proteins play roles in coordinating LD formation. Despite their lack of ultrastructural diversity, LDs in different mammalian cell types are involved in a wide range of biological functions. These include roles in membrane homeostasis, regulation of hypoxia, neoplastic inflammatory responses, cellular oxidative status, lipid peroxidation, and protection against potentially toxic intracellular fatty acids and lipophilic xenobiotics. Herein, the roles of mammalian LDs and their associated proteins are reviewed with a particular focus on their roles in pathological, immunological and anti-toxicological processes.

摘要

哺乳动物的脂滴(LDs)是一种特殊的胞质细胞器,由一个中性脂质核心组成,周围是由单层磷脂和特定的蛋白质组成的膜,这些蛋白质的种类和数量根据每个 LD 的位置和功能而有所不同。在过去的十年中,人们对 LD 的生物发生和功能有了更深入的了解。现在,LD 被认为是参与细胞内稳态以及其他重要功能的动态细胞器。LD 的生物发生是一个复杂的、高度调节的过程,尽管其潜在的分子机制的某些方面仍不清楚,但组装发生在内质网上。例如,目前还不清楚有多少种酶参与 LD 中性脂质成分的生物合成,以及这个过程如何协调以响应不同的代谢信号,促进或抑制 LD 的形成和周转。除了参与中性脂质生物合成的酶外,各种支架蛋白在协调 LD 形成中也发挥作用。尽管哺乳动物细胞中的 LD 在超微结构上缺乏多样性,但它们参与了广泛的生物学功能。这些功能包括在膜稳态、缺氧调节、肿瘤炎症反应、细胞氧化状态、脂质过氧化以及防止潜在有毒的细胞内脂肪酸和亲脂性外源性毒物方面发挥作用。本文综述了哺乳动物 LD 及其相关蛋白的作用,特别关注它们在病理、免疫和抗毒性过程中的作用。

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