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普遍保守的原核 GTP 酶。

The universally conserved prokaryotic GTPases.

机构信息

Centre of Microbial and Plant Genetics, K. U. Leuven, Kasteelpark Arenberg 20, 3001 Leuven, Belgium.

出版信息

Microbiol Mol Biol Rev. 2011 Sep;75(3):507-42, second and third pages of table of contents. doi: 10.1128/MMBR.00009-11.

Abstract

Members of the large superclass of P-loop GTPases share a core domain with a conserved three-dimensional structure. In eukaryotes, these proteins are implicated in various crucial cellular processes, including translation, membrane trafficking, cell cycle progression, and membrane signaling. As targets of mutation and toxins, GTPases are involved in the pathogenesis of cancer and infectious diseases. In prokaryotes also, it is hard to overestimate the importance of GTPases in cell physiology. Numerous papers have shed new light on the role of bacterial GTPases in cell cycle regulation, ribosome assembly, the stress response, and other cellular processes. Moreover, bacterial GTPases have been identified as high-potential drug targets. A key paper published over 2 decades ago stated that, "It may never again be possible to capture [GTPases] in a family portrait" (H. R. Bourne, D. A. Sanders, and F. McCormick, Nature 348:125-132, 1990) and indeed, the last 20 years have seen a tremendous increase in publications on the subject. Sequence analysis identified 13 bacterial GTPases that are conserved in at least 75% of all bacterial species. We here provide an overview of these 13 protein subfamilies, covering their cellular functions as well as cellular localization and expression levels, three-dimensional structures, biochemical properties, and gene organization. Conserved roles in eukaryotic homologs will be discussed as well. A comprehensive overview summarizing current knowledge on prokaryotic GTPases will aid in further elucidating the function of these important proteins.

摘要

P 环 GTP 酶超大家族的成员具有一个保守的三维结构核心域。在真核生物中,这些蛋白质参与各种关键的细胞过程,包括翻译、膜运输、细胞周期进程和膜信号转导。作为突变和毒素的靶点,GTP 酶参与癌症和传染病的发病机制。在原核生物中,GTP 酶在细胞生理学中的重要性也不容低估。许多论文揭示了细菌 GTP 酶在细胞周期调控、核糖体组装、应激反应和其他细胞过程中的作用。此外,细菌 GTP 酶已被确定为具有高潜力的药物靶点。20 多年前发表的一篇重要论文指出,“可能再也不可能将 [GTP 酶] 纳入全家福”(H. R. Bourne、D. A. Sanders 和 F. McCormick,Nature 348:125-132, 1990),事实上,在过去的 20 年中,关于该主题的出版物数量大幅增加。序列分析确定了至少在 75%的所有细菌物种中保守的 13 种细菌 GTP 酶。我们在此概述了这 13 个蛋白质亚家族,涵盖了它们的细胞功能以及细胞定位和表达水平、三维结构、生化特性和基因组织。还将讨论在真核同源物中保守的作用。对原核 GTP 酶的综合概述将有助于进一步阐明这些重要蛋白质的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5276/3165542/a5a606675a39/zmr9990922770007.jpg

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