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霍乱毒素B亚基可诱导脂质双层产生局部曲率。

Cholera toxin B subunit induces local curvature on lipid bilayers.

作者信息

Pezeshkian Weria, Nåbo Lina J, Ipsen John H

机构信息

Center for Biomembrane Physics (MEMPHYS) Department of Physics, Chemistry and Pharmacy (FKF) University of Southern Denmark Odense Odense M Denmark.

出版信息

FEBS Open Bio. 2017 Oct 10;7(11):1638-1645. doi: 10.1002/2211-5463.12321. eCollection 2017 Nov.

Abstract

The B subunit of the bacterial cholera toxin (CTxB) is responsible for the toxin binding to the cell membrane and its intracellular trafficking. CTxB binds to the monosialotetrahexosyl ganglioside at the plasma membrane of the target cell and mediates toxin internalization by endocytosis. CTxB induces a local membrane curvature that is essential for its clathrin-independent uptake. Using all-atom molecular dynamics, we show that CTxB induces local curvature, with the radius of curvature around 36 nm. The main feature of the CTxB molecular structure that causes membrane bending is the protruding alpha helices in the middle of the protein. Our study points to a generic protein design principle for generating local membrane curvature through specific binding to their lipid anchors.

摘要

细菌霍乱毒素(CTxB)的B亚基负责毒素与细胞膜的结合及其细胞内运输。CTxB与靶细胞质膜上的单唾液酸四己糖神经节苷脂结合,并通过内吞作用介导毒素内化。CTxB诱导局部膜曲率,这对其非网格蛋白依赖性摄取至关重要。通过全原子分子动力学,我们表明CTxB诱导局部曲率,曲率半径约为36纳米。导致膜弯曲的CTxB分子结构的主要特征是蛋白质中部突出的α螺旋。我们的研究指出了一种通用的蛋白质设计原则,即通过与脂质锚定物的特异性结合来产生局部膜曲率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d04/5666388/a7f398de20c9/FEB4-7-1638-g001.jpg

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