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CpxR 依赖调控粘质沙雷氏菌 PrtA 金属蛋白酶表达及其对生物膜形成的贡献。

CpxR-Dependent Thermoregulation of Serratia marcescens PrtA Metalloprotease Expression and Its Contribution to Bacterial Biofilm Formation.

机构信息

Instituto de Biología Molecular y Celular de Rosario, Consejo Nacional de Investigaciones Científicas y Tecnológicas, Universidad Nacional de Rosario, Rosario, Santa Fe, Argentina.

Instituto de Biología Molecular y Celular de Rosario, Consejo Nacional de Investigaciones Científicas y Tecnológicas, Universidad Nacional de Rosario, Rosario, Santa Fe, Argentina

出版信息

J Bacteriol. 2018 Mar 26;200(8). doi: 10.1128/JB.00006-18. Print 2018 Apr 15.

Abstract

PrtA is the major secreted metalloprotease of Previous reports implicate PrtA in the pathogenic capacity of this bacterium. PrtA is also clinically used as a potent analgesic and anti-inflammatory drug, and its catalytic properties attract industrial interest. Comparatively, there is scarce knowledge about the mechanisms that physiologically govern PrtA expression in In this work, we demonstrate that PrtA production is derepressed when the bacterial growth temperature decreases from 37°C to 30°C. We show that this thermoregulation occurs at the transcriptional level. We determined that upstream of , there is a conserved motif that is directly recognized by the CpxR transcriptional regulator. This feature is found along strains irrespective of their isolation source, suggesting an evolutionary conservation of CpxR-dependent regulation of PrtA expression. We found that in s, the CpxAR system is more active at 37°C than at 30°C. In good agreement with these results, in a mutant background, is derepressed at 37°C, while overexpression of the NlpE lipoprotein, a well-known CpxAR-inducing condition, inhibits PrtA expression, suggesting that the levels of the activated form of CpxR are increased at 37°C over those at 30°C. In addition, we establish that PrtA is involved in the ability of to develop biofilm. In accordance, CpxR influences the biofilm phenotype only when bacteria are grown at 37°C. In sum, our findings shed light on regulatory mechanisms that fine-tune PrtA expression and reveal a novel role for PrtA in the lifestyle of We demonstrate that metalloprotease PrtA expression is transcriptionally thermoregulated. While strongly activated below 30°C, its expression is downregulated at 37°C. We found that in , the CpxAR signal transduction system, which responds to envelope stress and bacterial surface adhesion, is activated at 37°C and able to downregulate PrtA expression by direct interaction of CpxR with a binding motif located upstream of the gene. Moreover, we reveal that PrtA expression favors the ability of to develop biofilm, irrespective of the bacterial growth temperature. In this context, thermoregulation along with a highly conserved CpxR-dependent modulation mechanism gives clues about the relevance of PrtA as a factor implicated in the persistence of on abiotic surfaces and in bacterial host colonization capacity.

摘要

PrtA 是 的主要分泌金属蛋白酶。先前的报告表明 PrtA 参与了该细菌的致病性。PrtA 也在临床上用作一种有效的镇痛和抗炎药物,其催化特性引起了工业界的兴趣。相比之下,关于生理上控制 中 PrtA 表达的机制知之甚少。在这项工作中,我们证明当细菌生长温度从 37°C 降低到 30°C 时,PrtA 的产生被解除抑制。我们表明这种温度调节发生在转录水平。我们确定在 的上游,有一个保守的模体,该模体直接被 CpxR 转录调节剂识别。该特征存在于 菌株中,与它们的分离来源无关,这表明 CpxR 依赖性 PrtA 表达调控在进化上是保守的。我们发现,在 中,CpxAR 系统在 37°C 时比在 30°C 时更活跃。与这些结果非常吻合的是,在 突变体背景下,37°C 时 被解除抑制,而 NlpE 脂蛋白的过表达(一种众所周知的 CpxAR 诱导条件)抑制了 PrtA 的表达,这表明在 37°C 时,激活形式的 CpxR 的水平比在 30°C 时增加。此外,我们确定 PrtA 参与了 形成生物膜的能力。相应地,只有当细菌在 37°C 下生长时,CpxR 才会影响生物膜表型。总之,我们的研究结果揭示了精细调控 PrtA 表达的调控机制,并揭示了 PrtA 在 生活方式中的新作用。我们证明 金属蛋白酶 PrtA 的表达受转录调控。虽然在低于 30°C 时强烈激活,但在 37°C 时其表达被下调。我们发现,在 中,CpxAR 信号转导系统响应于 envelope stress 和细菌表面粘附而被激活,并且能够通过 CpxR 与位于 基因上游的结合模体的直接相互作用来下调 PrtA 的表达。此外,我们揭示了 PrtA 的表达有利于 形成生物膜的能力,而与细菌生长温度无关。在这种情况下,热调节以及高度保守的 CpxR 依赖性调节机制提供了关于 PrtA 作为与 在非生物表面上的持久性以及细菌宿主定植能力相关的因素的相关性的线索。

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