首页> 外文期刊>Nucleic Acids Research >Mechanism of bacterial gene rearrangement: SprA-catalyzed precise DNA recombination and its directionality control by SprB ensure the gene rearrangement and stable expression of spsM during sporulation in Bacillus subtilis
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Mechanism of bacterial gene rearrangement: SprA-catalyzed precise DNA recombination and its directionality control by SprB ensure the gene rearrangement and stable expression of spsM during sporulation in Bacillus subtilis

机译:细菌基因重排的机制:SPRB催化的精确DNA重组及其方向性对照确保了在枯草芽孢杆菌孢子中的孢子中的基因重排和稳定表达

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摘要

A sporulation-specific gene, spsM, is disrupted by an active prophage, SP beta, in the genome of Bacillus subtilis. SP beta excision is required for two critical steps: the onset of the phage lytic cycle and the reconstitution of the spsM-coding frame during sporulation. Our in vitro study demonstrated that SprA, a serine-type integrase, catalyzed integration and excision reactions between attP of SP beta and attB within spsM, while SprB, a recombination directionality factor, was necessary only for the excision between attL and attR in the S beta lysogenic chromosome. DNA recombination occurred at the center of the short inverted repeat motif in the unique conserved 16 bp sequence among the att sites (5'-ACAGATAA/AGCTGTAT-3'; slash, breakpoint; underlines, inverted repeat), where SprA produced the 3'-overhanging AA and TT dinucleotides for rejoining the DNA ends through base-pairing. Electrophoretic mobility shift assay showed that SprB promoted synapsis of SprA subunits bound to the two target sites during excision but impaired it during integration. In vivo data demonstrated that sprB expression that lasts until the late stage of sporulation is crucial for stable expression of reconstituted spsM without reintegration of the SP beta prophage. These results present a deeper understanding of the mechanism of the prophage-mediated bacterial gene regulatory system.
机译:特异性特异性基因,SPSM,在枯草芽孢杆菌的基因组中,由活跃的ProPhage Spβ破坏。两个关键步骤需要SPβ切除:噬菌体裂变循环的开始和孢子期间SPSM编码框架的重构。我们的体外研究表明,SPSM,SPSM中的SPβ和attB ATTP之间的丝氨酸型整体酶,催化的整合和切除反应,而SPRB,重组方向性因子是必要的,只能在STATL和ATTR之间的切除方面进行切除β溶血性染色体。 DNA重组发生在ATT位点的独特保守的16bp序列中的短倒置重复基序的中心(5'-Acagataa / Agctgtat-3';斜线,断裂点;下划线,倒置重复),斯普拉生产3'用于将DNA重新加入DNA通过碱配对结束的-overging AA和TT二核苷酸。电泳迁移率偏移测定显示,在切除期间,SPRB促进了与两种靶位点结合的SPRA亚基突触,但在整合期间受损。体内数据证明,SPRB表达持续,直到孢子的晚期持续是对重构SPSM的稳定表达而不重新融入SPβQualhage的表达至关重要。这些结果对先兆介导的细菌基因调节系统的机制更深入了解。

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