在肺炎链球菌中,发烧样温度爆发通过HtrA依赖性途径促进能力发展。

IF 4.5 2区 生物学 Q1 Agricultural and Biological Sciences PLoS Genetics Pub Date : 2023-09-12 eCollection Date: 2023-09-01 DOI:10.1371/journal.pgen.1010946
Mickaël Maziero, David Lane, Patrice Polard, Mathieu Bergé
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引用次数: 0

摘要

肺炎链球菌(肺炎球菌)以其培养天然DNA转化能力而闻名。能力发展由comCDE和comAB操纵子的基础转录水平的变化驱动的自催化回路调节。这些基因是早期基因调节子的一部分,控制已知编码转化装置的晚期能力基因的表达。已知有几种压力条件可以促进能力发展,尽管对诱导途径的了解仍然很少。在这里,我们证明了短暂的温度升高诱导comCDE操纵子和早期基因的基础表达水平立即增加,进而刺激其完全诱导,包括晚期能力调节子的诱导。这种热调节依赖于HtrA伴侣蛋白/蛋白酶及其蛋白水解活性。我们发现其他能力诱导刺激,如诺氟沙星,不是通过HtrA依赖性途径传递的。这一发现有力地表明,能力至少可以由两种独立的途径诱导,从而强化了能力是肺炎球菌的一种普遍压力反应系统的观点。
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Fever-like temperature bursts promote competence development via an HtrA-dependent pathway in Streptococcus pneumoniae.

Streptococcus pneumoniae (the pneumococcus) is well known for its ability to develop competence for natural DNA transformation. Competence development is regulated by an autocatalytic loop driven by variations in the basal level of transcription of the comCDE and comAB operons. These genes are part of the early gene regulon that controls expression of the late competence genes known to encode the apparatus of transformation. Several stressful conditions are known to promote competence development, although the induction pathways are remain poorly understood. Here we demonstrate that transient temperature elevation induces an immediate increase in the basal expression level of the comCDE operon and early genes that, in turn, stimulates its full induction, including that of the late competence regulon. This thermal regulation depends on the HtrA chaperone/protease and its proteolytic activity. We find that other competence induction stimulus, like norfloxacin, is not conveyed by the HtrA-dependent pathway. This finding strongly suggests that competence can be induced by at least two independent pathways and thus reinforces the view that competence is a general stress response system in the pneumococcus.

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来源期刊
PLoS Genetics
PLoS Genetics 生物-遗传学
CiteScore
8.10
自引率
2.20%
发文量
438
审稿时长
1 months
期刊介绍: PLOS Genetics is run by an international Editorial Board, headed by the Editors-in-Chief, Greg Barsh (HudsonAlpha Institute of Biotechnology, and Stanford University School of Medicine) and Greg Copenhaver (The University of North Carolina at Chapel Hill). Articles published in PLOS Genetics are archived in PubMed Central and cited in PubMed.
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