脂质转移蛋白的特异性:一个体外故事。

Amazigh Hamaï, Guillaume Drin
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引用次数: 0

摘要

真核细胞的细胞器膜和质膜(PM)之间的脂质种类繁多,分布精细。因此,每个隔室都有自己的脂质组成和分子特征,这对许多蛋白质的功能命运至关重要。脂质的这种分布取决于两个主要过程:在不同亚细胞区域进行的脂质合成,以及这些脂质在膜之间和膜与膜之间的转移。本综述将讨论在整个细胞质中携带脂质的蛋白质,即 LTPs(脂质转移蛋白)。比起这些蛋白质的作用方式或生物学作用,我们将重点关注过去 60 年间为解决一个关键问题而采用的体外策略:这些 LTPs 的脂质配体是什么?我们将介绍这些策略在多大程度上与细胞中的结构数据和研究相结合,发现了一些蛋白质,即 ORP、Sec14、PITP、STARD、Ups/PRELI、StART-like、SMP-domain containing proteins 和 bridge-like LTPs,它们组成了一些主要的真核生物 LTP 家族及其脂质配体。我们将看到这些方法如何在细胞生物学中发挥核心作用,显示 LTPs 可以连接遥远的代谢分支,调节细胞膜的组成,甚至创建新的亚细胞区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Specificity of lipid transfer proteins: An in vitro story.

Lipids, which are highly diverse, are finely distributed between organelle membranes and the plasma membrane (PM) of eukaryotic cells. As a result, each compartment has its own lipid composition and molecular identity, which is essential for the functional fate of many proteins. This distribution of lipids depends on two main processes: lipid synthesis, which takes place in different subcellular regions, and the transfer of these lipids between and across membranes. This review will discuss the proteins that carry lipids throughout the cytosol, called LTPs (Lipid Transfer Proteins). More than the modes of action or biological roles of these proteins, we will focus on the in vitro strategies employed during the last 60 years to address a critical question: What are the lipid ligands of these LTPs? We will describe the extent to which these strategies, combined with structural data and investigations in cells, have made it possible to discover proteins, namely ORPs, Sec14, PITPs, STARDs, Ups/PRELIs, START-like, SMP-domain containing proteins, and bridge-like LTPs, which compose some of the main eukaryotic LTP families, and their lipid ligands. We will see how these approaches have played a central role in cell biology, showing that LTPs can connect distant metabolic branches, modulate the composition of cell membranes, and even create new subcellular compartments.

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