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跨膜蛋白四旋蛋白 4 和 CD9 感知膜曲率。

Transmembrane proteins tetraspanin 4 and CD9 sense membrane curvature.

机构信息

School of Chemistry, Raymond & Beverly Sackler Faculty of Exact Sciences, Tel Aviv University, 69978 Tel Aviv, Israel.

Center for Physics and Chemistry of Living Systems, Tel Aviv University, 69978 Tel Aviv, Israel.

出版信息

Proc Natl Acad Sci U S A. 2022 Oct 25;119(43):e2208993119. doi: 10.1073/pnas.2208993119. Epub 2022 Oct 17.

Abstract

Multiple membrane-shaping and remodeling processes are associated with tetraspanin proteins by yet unknown mechanisms. Tetraspanins constitute a family of proteins with four transmembrane domains present in every cell type. Prominent examples are tetraspanin4 and CD9, which are required for the fundamental cellular processes of migrasome formation and fertilization, respectively. These proteins are enriched in curved membrane structures, such as cellular retraction fibers and oocyte microvilli. The factors driving this enrichment are, however, unknown. Here, we revealed that tetraspanin4 and CD9 are curvature sensors with a preference for positive membrane curvature. To this end, we used a biomimetic system emulating membranes of cell retraction fibers and oocyte microvilli by membrane tubes pulled out of giant plasma membrane vesicles with controllable membrane tension and curvature. We developed a simple thermodynamic model for the partitioning of curvature sensors between flat and tubular membranes, which allowed us to estimate the individual intrinsic curvatures of the two proteins. Overall, our findings illuminate the process of migrasome formation and oocyte microvilli shaping and provide insight into the role of tetraspanin proteins in membrane remodeling processes.

摘要

多种膜形成和重塑过程通过未知的机制与四跨膜蛋白相关。四跨膜蛋白构成一个具有四个跨膜结构域的蛋白质家族,存在于每一种细胞类型中。突出的例子是四跨膜蛋白 4 和 CD9,它们分别是迁移小体形成和受精这两个基本细胞过程所必需的。这些蛋白质在细胞回缩纤维和卵母细胞微绒毛等弯曲的膜结构中富集。然而,驱动这种富集的因素尚不清楚。在这里,我们揭示了四跨膜蛋白 4 和 CD9 是具有正膜曲率偏好的曲率传感器。为此,我们使用了一种仿生系统,通过从具有可控膜张力和曲率的巨大质膜泡中拉出膜管来模拟细胞回缩纤维和卵母细胞微绒毛的膜。我们开发了一个用于曲率传感器在平面和管状膜之间分配的简单热力学模型,该模型允许我们估计这两种蛋白质的单个固有曲率。总的来说,我们的发现阐明了迁移小体形成和卵母细胞微绒毛形成的过程,并提供了对四跨膜蛋白在膜重塑过程中的作用的深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ae3/9618112/3cf6b3cdce25/pnas.2208993119fig01.jpg

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