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ESCRT 蛋白 CHMP2B 在重建的膜颈上充当扩散屏障。

The ESCRT protein CHMP2B acts as a diffusion barrier on reconstituted membrane necks.

机构信息

Laboratoire Physico Chimie Curie, Institut Curie, PSL Research University, CNRS UMR168, 75005 Paris, France.

Sorbonne Université, 75005, Paris, France.

出版信息

J Cell Sci. 2018 Aug 3;132(4):jcs217968. doi: 10.1242/jcs.217968.

Abstract

Endosomal sorting complexes required for transport (ESCRT)-III family proteins catalyze membrane remodeling processes that stabilize and constrict membrane structures. It has been proposed that stable ESCRT-III complexes containing CHMP2B could establish diffusion barriers at the post-synaptic spine neck. In order to better understand this process, we developed a novel method based on fusion of giant unilamellar vesicles to reconstitute ESCRT-III proteins inside GUVs, from which membrane nanotubes are pulled. The new assay ensures that ESCRT-III proteins polymerize only when they become exposed to physiologically relevant membrane topology mimicking the complex geometry of post-synaptic spines. We establish that CHMP2B, both full-length and with a C-terminal deletion (ΔC), preferentially binds to membranes containing phosphatidylinositol 4,5-bisphosphate [PI(4,5)P2]. Moreover, we show that CHMP2B preferentially accumulates at the neck of membrane nanotubes, and provide evidence that CHMP2B-ΔC prevents the diffusion of PI(4,5)P2 lipids and membrane-bound proteins across the tube neck. This indicates that CHMP2B polymers formed at a membrane neck may function as a diffusion barrier, highlighting a potential important function of CHMP2B in maintaining synaptic spine structures.

摘要

内体分选复合物运输所需蛋白(ESCRT-III)家族蛋白催化膜重塑过程,稳定并收缩膜结构。有人提出,含有 CHMP2B 的稳定 ESCRT-III 复合物可以在突触后棘突颈部建立扩散屏障。为了更好地理解这一过程,我们开发了一种新方法,即将巨大多层囊泡融合,在 GUV 内重新组装 ESCRT-III 蛋白,从 GUV 中可以拉出膜纳米管。新的测定方法确保 ESCRT-III 蛋白仅在暴露于模拟突触后棘突复杂几何形状的生理相关膜拓扑结构时才会聚合。我们确定全长和 C 端缺失(ΔC)的 CHMP2B 优先结合含有磷脂酰肌醇 4,5-二磷酸 [PI(4,5)P2] 的膜。此外,我们表明 CHMP2B 优先积聚在膜纳米管的颈部,并提供证据表明 CHMP2B-ΔC 阻止 PI(4,5)P2 脂质和膜结合蛋白在管颈处扩散。这表明在膜颈部形成的 CHMP2B 聚合物可能作为扩散屏障发挥作用,突出了 CHMP2B 在维持突触棘突结构中的潜在重要功能。

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