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CinA is regulated via ComX to modulate genetic transformation and cell viability in Streptococcus mutans

机译:通过ComX调节CinA以调节变形链球菌的遗传转化和细胞活力

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摘要

The Streptococcus mutans ComX-regulon encompasses >200 mostly uncharacterized genes, including cinA. Here we report that cinA is regulated by ComX in the presence of the competence stimulating peptide (CSP), wherein loss of CinA (strain SmuCinA) results in reduced transformability with or without added CSP by 74- and 15-fold, respectively (p<0.003). In CSP-supplemented cultures, a 2-fold increase in cell viability was noted for SmuCinA relative to UA159 (p<0.002), suggesting CinA’s involvement in the CSP-modulated cell killing response. Relative to UA159, loss of CinA also rendered the mutant hypersensitive to killing by methyl methanesulfonate (MMS), which impairs homologous recombination. Despite our use of a non-polar mutagenesis strategy to knockout cinA, which is the first gene of the multicistronic operon harboring cinA, we noted a drastic reduction in recA expression. By using a CinA-complemented mutant, we were able to partially, but not completely restore all phenotypes to UA159 levels. Complementation results suggested that although cinA participates in modulating competence, viability and MMS tolerance, genes downstream of the cinA transcript may also regulate these phenotypes, a finding that warrants further examination. This is the first report that describes a role for S. mutans’ CinA in contending with DNA damage, genetic transformation and cell survival.
机译:变形链球菌ComX-regulon包含> 200个大多数未鉴定的基因,包括cinA。在这里,我们报道了在能力刺激肽(CSP)存在下,ComA对cinA的调控,其中CinA(SmuCinA株)的缺失导致可转化性降低,而添加或不添加CSP分别降低了74倍和15倍(p < 0.003)。在补充了CSP的培养物中,与UA159相比,SmuCinA的细胞活力提高了2倍(p <0.002),表明CinA参与了CSP调节的细胞杀伤反应。相对于UA159,CinA的缺失也使突变体对甲磺酸甲酯(MMS)的杀伤反应非常敏感,这会损害同源重组。尽管我们使用了非极性诱变策略来敲除cinA(这是带有cinA的多顺反子操纵子的第一个基因),但我们注意到recA表达急剧下降。通过使用CinA互补突变体,我们能够部分但不完全将所有表型恢复到UA159水平。补充结果表明,尽管cinA参与调节能力,生存力和MMS耐受性,但cinA转录本下游的基因也可能调节这些表型,这一发现值得进一步研究。这是第一份描述变形链球菌CinA在对抗DNA损伤,遗传转化和细胞存活中的作用的报告。

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