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枯草芽孢杆菌168中插入序列IS256Bsu1的转座严格依赖于recA。

Transposition of insertion sequence IS256Bsu1 in Bacillus subtilis 168 is strictly dependent on recA.

作者信息

Akashi Motohiro, Harada Shota, Moki Syunsuke, Okouji Yuki, Takahashi Kiwamu, Kada Shigeki, Yamagami Keigo, Sekine Yasuhiko, Watanabe Satoru, Chibazakura Taku, Yoshikawa Hirofumi

机构信息

Department of Bioscience, Tokyo University of Agriculture.

Central Research Institute, Mitsukan Group Co., Ltd.

出版信息

Genes Genet Syst. 2017 Oct 18;92(2):59-71. doi: 10.1266/ggs.16-00071. Epub 2017 Mar 24.

Abstract

We developed an insertion sequence transposition detection system called the "jumping cat assay" and applied it to the Bacillus subtilis chromosome using IS256Bsu1 derived from B. subtilis natto. The high frequency of transposition enabled us to explore host factors; combining the assay and genetic analyses revealed that recA is essential for the transposition of IS256Bsu1. Detailed analyses using various domain mutants of recA demonstrated that this essentiality is not related to the function of recA in homologous recombination. Instead, the ATP binding and hydrolysis function seemed to be crucial for IS transposition. To elucidate the role of recA, we focused on the muB gene of the enterobacteriophage Mu. Based on information from the NCBI Conserved Domain Database, both MuB and RecA belong to the P-loop dNTPase superfamily. Further experiments revealed that muB complements the transposition-defective phenotype of a recA deletant, although it could not rescue UV sensitivity. These results suggest that recA shares a common function with muB that helps the transposition of IS256Bsu1 in B. subtilis.

摘要

我们开发了一种名为“跳跃猫试验”的插入序列转座检测系统,并将其应用于枯草芽孢杆菌染色体,该系统使用来源于纳豆芽孢杆菌的IS256Bsu1。高频转座使我们能够探索宿主因子;结合该试验和遗传分析表明,recA对于IS256Bsu1的转座至关重要。使用recA的各种结构域突变体进行的详细分析表明,这种必要性与recA在同源重组中的功能无关。相反,ATP结合和水解功能似乎对IS转座至关重要。为了阐明recA的作用,我们聚焦于噬菌体Mu的muB基因。基于美国国立生物技术信息中心保守结构域数据库的信息,MuB和RecA都属于P环dNTPase超家族。进一步的实验表明,muB可以弥补recA缺失突变体的转座缺陷表型,尽管它无法挽救紫外线敏感性。这些结果表明,recA与muB具有共同功能,有助于IS256Bsu1在枯草芽孢杆菌中的转座。

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