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破解膜脂密码。

Cracking the membrane lipid code.

机构信息

Department of Fundamental Microbiology, Faculty of Biology and Medicine, University of Lausanne, 1015 Lausanne, Switzerland.

Department of Biochemistry and Molecular Biology, University of the Basque Country (UPV/EHU), 48940, Leioa, Spain; Instituto Biofisika (UPV/EHU, CSIC), 48940, Leioa, Spain; Ikerbasque, Basque Foundation for Science, 48013 Bilbao, Spain.

出版信息

Curr Opin Cell Biol. 2023 Aug;83:102203. doi: 10.1016/j.ceb.2023.102203. Epub 2023 Jul 11.

Abstract

Why has nature acquired such a huge lipid repertoire? Although it would be theoretically possible to make a lipid bilayer fulfilling barrier functions with only one glycerophospholipid, there are diverse and numerous different lipid species. Lipids are heterogeneously distributed across the evolutionary tree with lipidomes evolving in parallel to organismal complexity. Moreover, lipids are different between organs and tissues and even within the same cell, different organelles have characteristic lipid signatures. At the molecular level, membranes are asymmetric and laterally heterogeneous. This lipid asymmetry at different scales indicates that these molecules may play very specific molecular functions in biology. Some of these roles have been recently uncovered: lipids have been shown to be essential in processes such as hypoxia and ferroptosis or in protein sorting and trafficking but many of them remain still unknown. In this review we will discuss the importance of understanding lipid diversity in biology across scales and we will share a toolbox with some of the emerging technologies that are helping us to uncover new lipid molecular functions in cell biology and, step by step, crack the membrane lipid code.

摘要

为什么自然界会拥有如此庞大的脂质库?虽然仅用一种甘油磷脂就有可能构建出具有屏障功能的脂质双层,但实际上脂质的种类却多种多样且数量繁多。脂质在进化树上呈异质分布,其脂质组与生物复杂性呈平行进化。此外,脂质在不同器官和组织之间存在差异,即使在同一细胞内,不同细胞器也具有特征性的脂质特征。在分子水平上,膜是不对称和侧向异质的。这种不同尺度的脂质不对称性表明,这些分子在生物学中可能具有非常特定的分子功能。其中一些作用最近已经被揭示出来:脂质在缺氧和铁死亡或蛋白质分拣和运输等过程中是必不可少的,但其中许多仍然未知。在这篇综述中,我们将讨论在不同尺度上理解生物学中脂质多样性的重要性,并分享一些新兴技术,这些技术正在帮助我们揭示细胞生物学中脂质的新分子功能,并逐步破解膜脂密码。

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