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HtrA 介导的 DNA 摄取装置的选择性降解加速了肺炎球菌转化的终止。

HtrA-mediated selective degradation of DNA uptake apparatus accelerates termination of pneumococcal transformation.

机构信息

Center for Infectious Disease Research, School of Medicine, Tsinghua University, Beijing, China.

School of Life Sciences, Tsinghua University, Beijing, China.

出版信息

Mol Microbiol. 2019 Oct;112(4):1308-1325. doi: 10.1111/mmi.14364. Epub 2019 Aug 29.

Abstract

Natural transformation mediates horizontal gene transfer, and thereby promotes exchange of antibiotic resistance and virulence traits among bacteria. Streptococcus pneumoniae, the first known transformable bacterium, rapidly activates and then terminates the transformation state, but it is unclear how the bacterium accomplishes this rapid turn-around at the protein level. This work determined the transcriptomic and proteomic dynamics during the window of pneumococcal transformation. RNA sequencing revealed a nearly uniform temporal pattern of rapid transcriptional activation and subsequent shutdown for the genes encoding transformation proteins. In contrast, mass spectrometry analysis showed that the majority of transformation proteins were substantially preserved beyond the window of transformation. However, ComEA and ComEC, major components of the DNA uptake apparatus for transformation, were completely degraded at the end of transformation. Further mutagenesis screening revealed that the membrane-associated serine protease HtrA mediates selective degradation of ComEA and ComEC, strongly suggesting that breakdown of the DNA uptake apparatus by HtrA is an important mechanism for termination of pneumococcal transformation. Finally, our mutagenesis analysis showed that HtrA inhibits natural transformation of Streptococcus mitis and Streptococcus gordonii. Together, this work has revealed that HtrA regulates the level and duration of natural transformation in multiple streptococcal species.

摘要

自然转化介导水平基因转移,从而促进细菌之间抗生素耐药性和毒力特性的交换。肺炎链球菌是已知的第一种可转化细菌,它能迅速激活并终止转化状态,但目前尚不清楚细菌如何在蛋白质水平上实现这种快速转变。本研究确定了肺炎链球菌转化过程中的转录组和蛋白质组动态。RNA 测序显示,转化蛋白编码基因的转录迅速激活,随后关闭,呈现出几乎均匀的时间模式。相比之下,质谱分析显示,大多数转化蛋白在转化窗口之外仍大量存在。然而,ComEA 和 ComEC 是转化过程中 DNA 摄取装置的主要组成部分,在转化结束时完全降解。进一步的突变筛选显示,膜相关丝氨酸蛋白酶 HtrA 介导 ComEA 和 ComEC 的选择性降解,这强烈表明 HtrA 对 DNA 摄取装置的破坏是肺炎链球菌转化终止的重要机制。最后,我们的突变分析表明 HtrA 抑制了草绿色链球菌和戈登链球菌的自然转化。总之,这项工作揭示了 HtrA 调节多种链球菌物种自然转化的水平和持续时间。

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