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在自然转化过程中,枯草芽孢杆菌含有DprA-SsbA的RecA拮抗RecX的功能。

Bacillus subtilis RecA with DprA-SsbA antagonizes RecX function during natural transformation.

作者信息

Le Shimin, Serrano Ester, Kawamura Ryo, Carrasco Begoña, Yan Jie, Alonso Juan C

机构信息

Department of Physics, National University of Singapore, 117551, Singapore.

Mechanobiology Institute, National University of Singapore, 117411, Singapore.

出版信息

Nucleic Acids Res. 2017 Sep 6;45(15):8873-8885. doi: 10.1093/nar/gkx583.

Abstract

Bacillus subtilis DprA and RecX proteins, which interact with RecA, are crucial for efficient chromosomal and plasmid transformation. We showed that RecA, in the rATP·Mg2+ bound form (RecA·ATP), could not compete with RecX, SsbA or SsbB for assembly onto single-stranded (ss)DNA, but RecA·dATP partially displaced these proteins from ssDNA. RecX promoted reversible depolymerization of preformed RecA·ATP filaments. The two-component DprA-SsbA mediator reversed the RecX negative effect on RecA filament extension, but not DprA or DprA and SsbB. In the presence of DprA-SsbA, RecX added prior to RecA·ATP inhibited DNA strand exchange, but this inhibition was reversed when RecX was added after RecA. We propose that RecA nucleation is more sensitive to RecX action than is RecA filament growth. DprA-SsbA facilitates formation of an active RecA filament that directly antagonizes the inhibitory effects of RecX. RecX and DprA enable chromosomal transformation by altering RecA filament dynamics. DprA-SsbA and RecX proteins constitute a new regulatory network of RecA function. DprA-SsbA contributes to the formation of an active RecA filament and directly antagonizes the inhibitory effects of RecX during natural transformation.

摘要

枯草芽孢杆菌的DprA和RecX蛋白与RecA相互作用,对高效的染色体和质粒转化至关重要。我们发现,处于rATP·Mg2+结合形式(RecA·ATP)的RecA无法与RecX、SsbA或SsbB竞争组装到单链(ss)DNA上,但RecA·dATP能部分地将这些蛋白从ssDNA上置换下来。RecX促进了预先形成的RecA·ATP细丝的可逆解聚。双组分DprA - SsbA介质逆转了RecX对RecA细丝延伸的负面影响,但DprA或DprA与SsbB则不能。在DprA - SsbA存在的情况下,在RecA·ATP之前添加RecX会抑制DNA链交换,但当在RecA之后添加RecX时,这种抑制作用会被逆转。我们提出,RecA成核比RecA细丝生长对RecX的作用更敏感。DprA - SsbA促进形成一种活性RecA细丝,直接对抗RecX的抑制作用。RecX和DprA通过改变RecA细丝动力学实现染色体转化。DprA - SsbA和RecX蛋白构成了RecA功能的一个新调控网络。DprA - SsbA有助于形成活性RecA细丝,并在自然转化过程中直接对抗RecX的抑制作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/302b/5587729/0d72c85cf2ce/gkx583fig1.jpg

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