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Identification of a predicted partner-switching system that affects production of the gene transfer agent RcGTA and stationary phaseudviability in Rhodobacter capsulatus

机译:鉴定影响基因转移剂RcGTa和固定相的产生的预测的配偶体转换系统荚膜红细菌(Rhodobacter capsulatus)的生存能力

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摘要

Background: Production of the gene transfer agent RcGTA in the α-proteobacterium Rhodobacter capsulatus is dependent upon the response regulator protein CtrA. Loss of this regulator has widespread effects on transcription in R. capsulatus, including the dysregulation of numerous genes encoding other predicted regulators. This includes a set of putative components of a partner-switching signaling pathway with sequence homology to the σ-regulating proteins RsbV, RsbW, and RsbY that have been extensively characterized for their role in stress responses in gram-positive bacteria. These R. capsulatus homologues, RbaV, RbaW, and RbaY, have been investigated for their possible role in controlling RcGTA gene expression.ududResults: A mutant strain lacking rbaW showed a significant increase in RcGTA gene expression and production. Mutation of rbaV or rbaY led to a decrease in RcGTA gene expression and production, and these mutants also showed decreased viability in the stationary phase and produced unusual colony morphologies. In vitro and in vivo protein interaction assays demonstrated that RbaW and RbaV interact. A combination of gene disruptions and protein-protein interaction assays were unsuccessful in attempts to identify a cognate σ factor, and the genetic data support a model where the RbaV protein that is the determinant regulator of RcGTA gene expression in this system.ududConclusions: These findings provide new information about RcGTA regulation by a putative partner-switching system and further illustrate the integration of RcGTA production into R. capsulatus physiology.
机译:背景:α-变形杆菌红球菌中基因转移剂RcGTA的产生取决于应答调节蛋白CtrA。该调节剂的丧失对荚膜红球菌的转录具有广泛的影响,包括编码其他预测的调节剂的许多基因的失调。这包括一组与σ调节蛋白RsbV,RsbW和RsbY具有序列同源性的伙伴转换信号通路的推定成分,这些成分已被广泛表征为它们在革兰氏阳性细菌中的应激反应中的作用。研究了这些荚膜芽孢杆菌同源物RbaV,RbaW和RbaY在控制RcGTA基因表达中的可能作用。 ud ud结果:缺少rbaW的突变菌株显示RcGTA基因表达和产量显着增加。 rbaV或rbaY的突变导致RcGTA基因表达和产量的降低,这些突变体在固定相中的活力也降低,并产生了异常的菌落形态。体外和体内蛋白相互作用测定表明RbaW和RbaV相互作用。基因破坏和蛋白质-蛋白质相互作用试验的结合未能成功地鉴定关联的σ因子,并且遗传数据支持一种模型,其中RbaV蛋白质是该系统中RcGTA基因表达的决定性调节因子。 ud ud :这些发现提供了有关RcGTA通过一个假定的伙伴转换系统调控的新信息,并进一步说明了RcGTA生产与荚膜红斑狼疮生理的整合。

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