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细菌驱动蛋白轻链 (Bklc) 将 Btub 细胞骨架与膜连接起来。

Bacterial kinesin light chain (Bklc) links the Btub cytoskeleton to membranes.

机构信息

Institut Curie, PSL Research University, CNRS UMR3348, F-91405 Orsay, France.

Université Paris Sud, Université Paris-Saclay, CNRS UMR3348, F-91405 Orsay, France.

出版信息

Sci Rep. 2017 Mar 30;7:45668. doi: 10.1038/srep45668.

Abstract

Bacterial kinesin light chain is a TPR domain-containing protein encoded by the bklc gene, which co-localizes with the bacterial tubulin (btub) genes in a conserved operon in Prosthecobacter. Btub heterodimers show high structural homology with eukaryotic tubulin and assemble into head-to-tail protofilaments. Intriguingly, Bklc is homologous to the light chain of the microtubule motor kinesin and could thus represent an additional eukaryotic-like cytoskeletal element in bacteria. Using biochemical characterization as well as cryo-electron tomography we show here that Bklc interacts specifically with Btub protofilaments, as well as lipid vesicles and could thus play a role in anchoring the Btub filaments to the membrane protrusions in Prosthecobacter where they specifically localize in vivo. This work sheds new light into possible ways in which the microtubule cytoskeleton may have evolved linking precursors of microtubules to the membrane via the kinesin moiety that in today's eukaryotic cytoskeleton links vesicle-packaged cargo to microtubules.

摘要

细菌动力蛋白轻链是一种 TPR 结构域蛋白,由 bklc 基因编码,该基因与 Prosthecobacter 中保守操纵子中的细菌微管蛋白(btub)基因共定位。Btub 异二聚体与真核微管蛋白具有高度的结构同源性,并组装成头对头原丝。有趣的是,Bklc 与微管马达动力蛋白的轻链同源,因此可能代表细菌中另一种类似真核的细胞骨架成分。使用生化特性分析和冷冻电镜断层扫描,我们在这里表明 Bklc 与 Btub 原丝特异性相互作用,以及脂质小泡,因此可能在 Prosthecobacter 中将 Btub 纤维锚定在膜突中发挥作用,在那里它们在体内特异性定位。这项工作为微管细胞骨架可能通过与微管相连的动力蛋白部分进化的可能方式提供了新的线索,在今天的真核细胞骨架中,动力蛋白部分将囊泡包裹的货物与微管相连。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34eb/5372463/a561fd8d658d/srep45668-f1.jpg

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