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必需的细菌细胞分裂蛋白FtsZ是一种GTP酶。

The essential bacterial cell-division protein FtsZ is a GTPase.

作者信息

de Boer P, Crossley R, Rothfield L

机构信息

Department of Microbiology, University of Connecticut Health Center, Farmington 06030.

出版信息

Nature. 1992 Sep 17;359(6392):254-6. doi: 10.1038/359254a0.

Abstract

Cytokinesis defines the last stage in the division cycle, in which cell constriction leads to the formation of daughter cells. The biochemical mechanisms responsible for this process are poorly understood. In bacteria, the ftsZ gene product, FtsZ, is required for cell division, playing a prominent role in cytokinesis. The cellular concentration of FtsZ regulates the frequency of division and genetic studies have indicated that it is the target of several endogenous division inhibitors. At the time of onset of septal invagination, the FtsZ protein is recruited from the cytoplasm to the division site, where it assembles into a ring that remains associated with the leading edge of the invaginating septum until septation is completed. Here we report that FtsZ specifically binds and hydrolyses GTP. The reaction can be dissociated into a GTP-dependent activation stage that is markedly affected by the concentration of FtsZ, and a hydrolysis stage in which GTP is hydrolysed to GDP. The results indicate that GTP binding and hydrolysis are important in enabling FtsZ to support bacterial cytokinesis, either by facilitating the assembly of the FtsZ ring and/or by catalysing an essential step in the cytokinetic process itself.

摘要

胞质分裂是细胞分裂周期的最后阶段,在此过程中细胞缢缩导致子细胞的形成。人们对负责这一过程的生化机制了解甚少。在细菌中,ftsZ基因产物FtsZ是细胞分裂所必需的,在胞质分裂中起重要作用。FtsZ的细胞浓度调节分裂频率,遗传学研究表明它是几种内源性分裂抑制剂的作用靶点。在隔膜内陷开始时,FtsZ蛋白从细胞质被募集到分裂位点,在那里它组装成一个环,该环一直与内陷隔膜的前沿相连,直到隔膜形成完成。在此我们报道FtsZ特异性结合并水解GTP。该反应可分为一个受FtsZ浓度显著影响的GTP依赖性激活阶段,以及一个GTP水解为GDP的水解阶段。结果表明,GTP结合和水解对于使FtsZ支持细菌胞质分裂很重要,这可能是通过促进FtsZ环的组装和/或催化胞质分裂过程本身的一个关键步骤来实现的。

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