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新型功能的感受态诱导肽,XIP,作为变形链球菌的细胞死亡效应因子。

A novel function for the competence inducing peptide, XIP, as a cell death effector of Streptococcus mutans.

机构信息

Department of Oral Microbiology, Faculty of Dentistry, University of Toronto, Toronto, ON, Canada.

出版信息

FEMS Microbiol Lett. 2012 Nov;336(2):104-12. doi: 10.1111/j.1574-6968.2012.02660.x. Epub 2012 Sep 26.

Abstract

In Streptococcus mutans, ComX, an alternative sigma factor, drives the transcription of the 'late-competence genes' required for genetic transformation. ComX activity is modulated by inputs from two signaling pathways, ComDE and ComRS, that respond to the competence-stimulating peptide (CSP) and the SigX-inducing peptide (XIP), respectively. In particular, the comRS, encoding the ComR regulatory protein and the ComS precursor to XIP, functions as the proximal regulatory system for ComX activation. Here, we investigated the individual and combinatorial effects of CSP and XIP on genetic transformation and cell killing of S. mutans. Our transformation results confirm the recent reports by Mashburn-Warren et al. and Desai et al. that XIP functions optimally in a chemically defined medium, whereas its activity is inhibited when cells are grown in complex medium. Using tandem mass spectrometry (MS/MS) fragmentation, a drastic reduction in XIP levels in ComX-deficient cultures were observed, suggesting a ComX-mediated positive feedback mechanism for XIP synthesis. Our evaluation of cell viability in the presence of 10 μM XIP resulted in killing nearly 82% of the population. The killing activity was shown to be dependent on the presence of comR/S and comX. These results suggest a novel role for XIP as a compelling effector of cell death. This is the first report that demonstrates a role for XIP in cell killing.

摘要

在变异链球菌中,ComX 是一种替代 sigma 因子,驱动遗传转化所需的“晚期竞争基因”的转录。ComX 活性受来自两个信号通路 ComDE 和 ComRS 的输入调节,分别对竞争刺激肽 (CSP) 和 SigX 诱导肽 (XIP) 作出反应。特别是,编码 ComR 调节蛋白和 XIP 前体的 comRS,作为 ComX 激活的近端调节系统。在这里,我们研究了 CSP 和 XIP 对变异链球菌遗传转化和细胞杀伤的单独和组合作用。我们的转化结果证实了 Mashburn-Warren 等人和 Desai 等人的最新报告,即 XIP 在化学成分确定的培养基中最佳发挥作用,而当细胞在复杂培养基中生长时,其活性受到抑制。使用串联质谱 (MS/MS) 碎裂,在 ComX 缺陷培养物中观察到 XIP 水平急剧降低,这表明 XIP 合成存在 ComX 介导的正反馈机制。我们在存在 10 μM XIP 的情况下评估细胞活力,导致近 82%的细胞死亡。杀伤活性被证明依赖于 comR/S 和 comX 的存在。这些结果表明 XIP 在细胞死亡中具有新的作用。这是第一个表明 XIP 在细胞杀伤中的作用的报告。

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