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组合多价相互作用驱动 COPII 衣壳的协同组装。

Combinatorial multivalent interactions drive cooperative assembly of the COPII coat.

机构信息

MRC Laboratory of Molecular Biology, Cambridge, UK.

Institute of Structural and Molecular Biology, Birkbeck College, London, UK.

出版信息

J Cell Biol. 2020 Nov 2;219(11). doi: 10.1083/jcb.202007135.

Abstract

Protein secretion is initiated at the endoplasmic reticulum by the COPII coat, which self-assembles to form vesicles. Here, we examine the mechanisms by which a cargo-bound inner coat layer recruits and is organized by an outer scaffolding layer to drive local assembly of a stable structure rigid enough to enforce membrane curvature. An intrinsically disordered region in the outer coat protein, Sec31, drives binding with an inner coat layer via multiple distinct interfaces, including a newly defined charge-based interaction. These interfaces combinatorially reinforce each other, suggesting coat oligomerization is driven by the cumulative effects of multivalent interactions. The Sec31 disordered region could be replaced by evolutionarily distant sequences, suggesting plasticity in the binding interfaces. Such a multimodal assembly platform provides an explanation for how cells build a powerful yet transient scaffold to direct vesicle traffic.

摘要

蛋白质分泌是在内质网上由 COPII 衣被启动的,COPII 衣被自我组装形成小泡。在这里,我们研究了货物结合的内套层如何通过招募和组织由外套架层驱动的局部组装来驱动稳定结构的局部组装的机制,该稳定结构刚性足以强制膜曲率。外套蛋白 Sec31 中的一个固有无序区域通过多个不同的界面(包括新定义的基于电荷的相互作用)与内套层结合。这些界面相互组合增强,表明外套寡聚化是由多价相互作用的累积效应驱动的。Sec31 无序区可以被进化上遥远的序列取代,这表明结合界面具有可塑性。这种多模式组装平台为细胞如何构建强大但短暂的支架以指导囊泡运输提供了一个解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/844d/7594496/b98935f74f77/JCB_202007135_Fig1.jpg

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