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Competence for Genetic Transformation in Streptococcus pneumoniae: Mutations in σA Bypass the comW Requirement

机译:肺炎链球菌遗传转化的能力:σA中的突变绕过comW要求

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Competence for genetic transformation in the genus Streptococcus depends on an alternative sigma factor, σX, for coordinated synthesis of 23 proteins, which together establish the X state by permitting lysis of incompetent streptococci, uptake of DNA fragments, and integration of strands of that DNA into the resident genome. Initiation of transient accumulation of high levels of σX is coordinated between cells by transcription factors linked to peptide pheromone signals. In Streptococcus pneumoniae, elevated σX is insufficient for development of full competence without coexpression of a second competence-specific protein, ComW. ComW, shared by eight species in the Streptococcus mitis and Streptococcus anginosus groups, is regulated by the same pheromone circuit that controls σX, but its role in expression of the σX regulon is unknown. Using the strong, but not absolute, dependence of transformation on comW as a selective tool, we collected 27 independent comW bypass mutations and mapped them to 10 single-base transitions, all within rpoD, encoding the primary sigma factor subunit of RNA polymerase, σA. Eight mapped to sites in rpoD region 4 that are implicated in interaction with the core β subunit, indicating that ComW may act to facilitate competition of the alternative sigma factor σX for access to core polymerase.
机译:链球菌属中遗传转化的能力取决于替代的sigma因子σ X ,用于23种蛋白质的协调合成,这些蛋白质通过允许裂解不称职的链球菌,吸收DNA片段,并将该DNA链整合到驻留基因组中。细胞间高水平σ X 的瞬时积累的启动是由与肽信息素信号相关的转录因子协调的。在肺炎链球菌中,升高的σ X 不足以在没有共同表达第二种能力特异性蛋白ComW的情况下发展出完全能力。链球菌和链球菌组中的八个物种共有的ComW受控制σ X 的同一信息素回路调控,但它在σ X 的表达中的作用regulon未知。使用对comW 的强烈但非绝对的依赖性作为选择性工具,我们收集了27个独立的 comW 旁路突变并将其映射到10个单碱基过渡,所有在 rpoD 中,编码RNA聚合酶的主要sigma因子亚基σ A 。八个映射到 rpoD 区域4中与核心β亚基相互作用的位点,表明ComW可能起到促进替代西格玛因子σ X 竞争的作用。核心聚合酶。

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