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首页> 外文期刊>The Journal of biological chemistry >Bacillus subtilis DprA Recruits RecA onto Single-stranded DNA and Mediates Annealing of Complementary Strands Coated by SsbB and SsbA
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Bacillus subtilis DprA Recruits RecA onto Single-stranded DNA and Mediates Annealing of Complementary Strands Coated by SsbB and SsbA

机译:枯草芽孢杆菌DPRA新募集募集型在单链DNA上,并介导通过SSBB和SSBA涂覆的互补链的退火

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摘要

Naturally transformable bacteria recombine internalized ssDNA with a homologous resident duplex (chromosomal transformation) or complementary internalized ssDNAs (plasmid or viral transformation). Bacillus subtilis competence-induced DprA, RecA, SsbB, and SsbA proteins are involved in the early processing of the internalized ssDNA, with DprA physically interacting with RecA. SsbB and SsbA bind and melt secondary structures in ssDNA but limit RecA loading onto ssDNA. DprA binds to ssDNA and facilitates partial dislodging of both single-stranded binding (SSB) proteins from ssDNA. In the absence of homologous duplex DNA, DprA does not significantly increase RecA nucleation onto protein-free ssDNA. DprA facilitates RecA nucleation and filament extension onto SsbB-coated or SsbB plus SsbA-coated ssDNA. DprA facilitates RecA-mediated DNA strand exchange in the presence of both SSB proteins. DprA, which plays a crucial role in plasmid transformation, anneals complementary strands preferentially coated by SsbB to form duplex circular plasmid molecules. Our results provide a mechanistic framework for conceptualizing the coordinated events modulated by SsbB in concert with SsbA and DprA that are crucial for RecA-dependent chromosomal transformation and RecA-independent plasmid transformation.
机译:具有同源常规双链体(染色体转化)或互补的内化SSDNA(质粒或病毒转化)的天然可变性细菌重组内化的SSDNA。枯草芽孢杆菌诱导的DPRA,RECA,SSBB和SSBA蛋白参与内化SSDNA的早期加工,DPRA与RECA物理地相互作用。 SSBB和SSBA在SSDNA中结合和熔化二次结构,但将RECA加载限制在SSDNA上。 DPRA与SSDNA结合,促进来自SSDNA的单链结合(SSB)蛋白的部分脱位。在没有同源双链DNA的情况下,DPRA不会显着将RECA成核显着增加到无蛋白质的SSDNA上。 DPRA促进RECA成核和灯丝延伸到SSBB涂覆或SSBB加上SSBA涂覆的SSDNA上。 DPRA在两个SSB蛋白的存在下促进RECA介导的DNA链交换。 DPRA在质粒转化中起到至关重要的作用,退火优先通过SSBB涂覆的互补链以形成双链体圆形质粒分子。我们的结果提供了一种机械框架,用于概念调节SSBB调节的协调事件,与SSBA和DPRA对RECA依赖性染色体转化和RECA独立的质粒转化至关重要。

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