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细菌细胞骨架及其对新型抗生素靶点的意义。

Bacterial cytoskeleton and implications for new antibiotic targets.

作者信息

Wang Huan, Xie Longxiang, Luo Hongping, Xie Jianping

机构信息

a Institute of Modern Biopharmaceuticals, State Key Laboratory Breeding Base of Eco-Environment and Bio-Resource of the Three Gorges Area, Key Laboratory of Ministry of Education Eco-Environment of the Three Gorges Reservoir Region, School of Life Sciences, Southwest University , Chongqing , China.

出版信息

J Drug Target. 2016;24(5):392-8. doi: 10.3109/1061186X.2015.1095195. Epub 2015 Nov 7.

Abstract

Traditionally eukaryotes exclusive cytoskeleton has been found in bacteria and other prokaryotes. FtsZ, MreB and CreS are bacterial counterpart of eukaryotic tubulin, actin filaments and intermediate filaments, respectively. FtsZ can assemble to a Z-ring at the cell division site, regulate bacterial cell division; MreB can form helical structure, and involve in maintaining cell shape, regulating chromosome segregation; CreS, found in Caulobacter crescentus (C. crescentus), can form curve or helical filaments in intracellular membrane. CreS is crucial for cell morphology maintenance. There are also some prokaryotic unique cytoskeleton components playing crucial roles in cell division, chromosome segregation and cell morphology. The cytoskeleton components of Mycobacterium tuberculosis (M. tuberculosis), together with their dynamics during exposure to antibiotics are summarized in this article to provide insights into the unique organization of this formidable pathogen and druggable targets for new antibiotics.

摘要

传统上认为真核生物特有的细胞骨架在细菌和其他原核生物中并不存在。FtsZ、MreB和CreS分别是真核微管蛋白、肌动蛋白丝和中间丝在细菌中的对应物。FtsZ能在细胞分裂位点组装成Z环,调控细菌细胞分裂;MreB能形成螺旋结构,参与维持细胞形状、调控染色体分离;在新月柄杆菌中发现的CreS能在内膜中形成曲线状或螺旋状细丝。CreS对维持细胞形态至关重要。还有一些原核生物特有的细胞骨架成分在细胞分裂、染色体分离和细胞形态中发挥关键作用。本文总结了结核分枝杆菌的细胞骨架成分及其在接触抗生素期间的动态变化,以深入了解这种强大病原体的独特组织结构以及新抗生素的可成药靶点。

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