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脂质自组装和凝集素诱导的质膜重排。

Lipid self-assembly and lectin-induced reorganization of the plasma membrane.

机构信息

Faculty of Biology, Albert-Ludwigs-University Freiburg, Schänzlestraße 1, 79104 Freiburg, Germany.

Centre for Biological Signalling Studies (BIOSS), Albert-Ludwigs-University Freiburg, Schänzlestraße 18, 79104 Freiburg, Germany.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2018 May 26;373(1747). doi: 10.1098/rstb.2017.0117.

Abstract

The plasma membrane represents an outstanding example of self-organization in biology. It plays a vital role in protecting the integrity of the cell interior and regulates meticulously the import and export of diverse substances. Its major building blocks are proteins and lipids, which self-assemble to a fluid lipid bilayer driven mainly by hydrophobic forces. Even if the plasma membrane appears-globally speaking-homogeneous at physiological temperatures, the existence of specialized nano- to micrometre-sized domains of raft-type character within cellular and synthetic membrane systems has been reported. It is hypothesized that these domains are the origin of a plethora of cellular processes, such as signalling or vesicular trafficking. This review intends to highlight the driving forces of lipid self-assembly into a bilayer membrane and the formation of small, transient domains within the plasma membrane. The mechanisms of self-assembly depend on several factors, such as the lipid composition of the membrane and the geometry of lipids. Moreover, the dynamics and organization of glycosphingolipids into nanometre-sized clusters will be discussed, also in the context of multivalent lectins, which cluster several glycosphingolipid receptor molecules and thus create an asymmetric stress between the two membrane leaflets, leading to tubular plasma membrane invaginations.This article is part of the theme issue 'Self-organization in cell biology'.

摘要

细胞膜是生物学中自我组织的一个杰出范例。它在保护细胞内部完整性方面起着至关重要的作用,并精细调节各种物质的内外运输。其主要组成部分是蛋白质和脂质,它们主要由疏水作用力驱动自组装成一个流动的脂质双层。即使细胞膜在生理温度下从全局上看是均匀的,但在细胞和合成膜系统中已经报道了具有筏型特征的专门纳米到微米大小的域的存在。据推测,这些域是众多细胞过程的起源,如信号转导或囊泡运输。本综述旨在强调脂质自组装成双层膜的驱动力以及在质膜内形成小的、瞬态域的机制。自组装的机制取决于几个因素,如膜的脂质组成和脂质的几何形状。此外,还将讨论鞘糖脂在纳米级簇中的动态和组织,也将讨论多价凝集素的情况,这些凝集素聚集了几个鞘糖脂受体分子,从而在两个膜小叶之间产生不对称的应力,导致管状质膜内陷。本文是“细胞生物学中的自组织”主题特刊的一部分。

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