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原囊杆菌属细菌中细胞骨架蛋白微管蛋白的基因。

Genes for the cytoskeletal protein tubulin in the bacterial genus Prosthecobacter.

作者信息

Jenkins Cheryl, Samudrala Ram, Anderson Iain, Hedlund Brian P, Petroni Giulio, Michailova Natasha, Pinel Nicolas, Overbeek Ross, Rosati Giovanna, Staley James T

机构信息

Department of Microbiology, University of Washington, Seattle, WA 98195, USA.

出版信息

Proc Natl Acad Sci U S A. 2002 Dec 24;99(26):17049-54. doi: 10.1073/pnas.012516899. Epub 2002 Dec 16.

Abstract

Tubulins, the protein constituents of the microtubule cytoskeleton, are present in all known eukaryotes but have never been found in the Bacteria or Archaea. Here we report the presence of two tubulin-like genes [bacterial tubulin a (btuba) and bacterial tubulin b (btubb)] in bacteria of the genus Prosthecobacter (Division Verrucomicrobia). In this study, we investigated the organization and expression of these genes and conducted a comparative analysis of the bacterial and eukaryotic protein sequences, focusing on their phylogeny and 3D structures. The btuba and btubb genes are arranged as adjacent loci within the genome along with a kinesin light chain gene homolog. RT-PCR experiments indicate that these three genes are cotranscribed, and a probable promoter was identified upstream of btuba. On the basis of comparative modeling data, we predict that the Prosthecobacter tubulins are monomeric, unlike eukaryotic alpha and beta tubulins, which form dimers and are therefore unlikely to form microtubule-like structures. Phylogenetic analyses indicate that the Prosthecobacter tubulins are quite divergent and do not support recent horizontal transfer of the genes from a eukaryote. The discovery of genes for tubulin in a bacterial genus may offer new insights into the evolution of the cytoskeleton.

摘要

微管细胞骨架的蛋白质成分微管蛋白存在于所有已知的真核生物中,但从未在细菌或古细菌中发现过。在此,我们报告在柄杆菌属(疣微菌门)的细菌中存在两个类微管蛋白基因[细菌微管蛋白a(btuba)和细菌微管蛋白b(btubb)]。在本研究中,我们研究了这些基因的组织和表达情况,并对细菌和真核生物的蛋白质序列进行了比较分析,重点关注它们的系统发育和三维结构。btuba和btubb基因与一个驱动蛋白轻链基因同源物一起作为相邻基因座排列在基因组中。逆转录聚合酶链反应实验表明这三个基因是共转录的,并且在btuba上游鉴定出一个可能的启动子。基于比较建模数据,我们预测柄杆菌属的微管蛋白是单体,这与真核生物的α和β微管蛋白不同,后者形成二聚体,因此不太可能形成类似微管的结构。系统发育分析表明,柄杆菌属的微管蛋白差异很大,不支持这些基因近期从真核生物水平转移而来。在一个细菌属中发现微管蛋白基因可能为细胞骨架的进化提供新的见解。

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