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首页> 外文期刊>Frontiers in Microbiology >Dual Regulation of Bacillus subtilis kinB Gene Encoding a Sporulation Trigger by SinR through Transcription Repression and Positive Stringent Transcription Control
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Dual Regulation of Bacillus subtilis kinB Gene Encoding a Sporulation Trigger by SinR through Transcription Repression and Positive Stringent Transcription Control

机译:枯草芽孢杆菌kinB 基因的双重调控,通过转录抑制和阳性严格转录控制来编码SinR的孢子形成触发。

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It is known that transcription of kinB encoding a trigger for Bacillus subtilis sporulation is under repression by SinR, a master repressor of biofilm formation, and under positive stringent transcription control depending on the adenine species at the transcription initiation nucleotide (nt). Deletion and base substitution analyses of the kinB promoter (P _(kinB) ) region using lacZ fusions indicated that either a 5-nt deletion (Δ5, nt -61/-57, +1 is the transcription initiation nt) or the substitution of G at nt -45 with A (G-45A) relieved kinB repression. Thus, we found a pair of SinR-binding consensus sequences (GTTCTYT; Y is T or C) in an inverted orientation (SinR-1) between nt -57/-42, which is most likely a SinR-binding site for kinB repression. This relief from SinR repression likely requires SinI, an antagonist of SinR. Surprisingly, we found that SinR is essential for positive stringent transcription control of P _(kinB) . Electrophoretic mobility shift assay (EMSA) analysis indicated that SinR bound not only to SinR-1 but also to SinR-2 (nt -29/-8) consisting of another pair of SinR consensus sequences in a tandem repeat arrangement; the two sequences partially overlap the ‘-35’ and ‘-10’ regions of P _(kinB) . Introduction of base substitutions (T-27C C-26T) in the upstream consensus sequence of SinR-2 affected positive stringent transcription control of P _(kinB) , suggesting that SinR binding to SinR-2 likely causes this positive control. EMSA also implied that RNA polymerase and SinR are possibly bound together to SinR-2 to form a transcription initiation complex for kinB transcription. Thus, it was suggested in this work that derepression of kinB from SinR repression by SinI induced by Spo0A~P and occurrence of SinR-dependent positive stringent transcription control of kinB might induce effective sporulation cooperatively, implying an intimate interplay by stringent response, sporulation, and biofilm formation.
机译:已知编码枯草芽孢杆菌孢子形成触发因子的kinB的转录受生物膜形成的主要阻遏物SinR的抑制,并取决于转录起始核苷酸(nt)上的腺嘌呤种类,处于正向严格的转录控制之下。使用lacZ融合蛋白对kinB启动子(P_(kinB))区域进行的缺失和碱基取代分析表明,要么5-nt缺失(Δ5,nt -61 / -57,+ 1是转录起始nt),要么是nt -45处的G与A(G-45A)解除了kinB抑制。因此,我们发现一对SinR结合共有序列(GTTCTYT; Y为T或C)位于nt -57 / -42之间的反向方向(SinR-1),这很可能是kinB抑制的SinR结合位点。减轻SinR抑制可能需要SinR拮抗剂SinI。令人惊讶地,我们发现SinR对于P_(kinB)的阳性严格转录控制是必不可少的。电泳迁移率迁移分析(EMSA)分析表明,SinR不仅与SinR-1结合,而且与由另一对SinR共有序列串联重复组成的SinR-2(nt -29 / -8)结合。这两个序列与P _(kinB)的“ -35”和“ -10”区域部分重叠。在SinR-2的上游共有序列中引入碱基取代(T-27C C-26T)影响了P_(kinB)的阳性严格转录控制,这表明SinR与SinR-2的结合可能导致了这种阳性控制。 EMSA还暗示RNA聚合酶和SinR可能与SinR-2结合在一起,形成用于kinB转录的转录起始复合物。因此,在这项工作中建议由Spo0A〜P诱导的SinI抑制kinB从SinR抑制SinR的抑制作用和kinB依赖SinR的阳性严格转录控制的发生可能协同诱导有效的孢子形成,暗示通过严格的反应,孢子形成,和生物膜形成。

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