生物
DNA
大肠杆菌
细菌
DNA复制
微生物学
计算生物学
遗传学
基因
作者
Xiaolin Xiong,Geng Wu,Wei Yue,Liqiong Liu,Yubing Zhang,Rui Su,Xiang Ping Jiang,Mengxue Li,Haiyan Gao,Xihao Tian,Yizhou Zhang,Hu Li,Si Chen,You Tang,Susu Jiang,Ruhua Huang,Zhiqiang Li,Yunfu Wang,Zixin Deng,Jiawei Wang,Peter C. Dedon,Shi Chen,Lianrong Wang
出处
期刊:Nature microbiology
日期:2020-04-06
卷期号:5 (7): 917-928
被引量:101
标识
DOI:10.1038/s41564-020-0700-6
摘要
Bacteria have evolved diverse mechanisms to fend off predation by bacteriophages. We previously identified the Dnd system, which uses DndABCDE to insert sulfur into the DNA backbone as a double-stranded phosphorothioate (PT) modification, and DndFGH, a restriction component. Here, we describe an unusual SspABCD-SspE PT system in Vibrio cyclitrophicus, Escherichia coli and Streptomyces yokosukanensis, which has distinct genetic organization, biochemical functions and phenotypic behaviour. SspABCD confers single-stranded and high-frequency PTs with SspB acting as a nickase and possibly introducing nicks to facilitate sulfur incorporation. Strikingly, SspABCD coupled with SspE provides protection against phages in unusual ways: (1) SspE senses sequence-specific PTs by virtue of its PT-stimulated NTPase activity to exert its anti-phage activity, and (2) SspE inhibits phage propagation by introducing nicking damage to impair phage DNA replication. These results not only expand our knowledge about the diversity and functions of DNA PT modification but also enhance our understanding of the known arsenal of defence systems.
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