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OxyR 与新月柄杆菌的过氧化氢应激反应。

OxyR and the hydrogen peroxide stress response in Caulobacter crescentus.

机构信息

Departamento de Microbiologia, Instituto de Ciências Biomédicas, Universidade de São Paulo, São Paulo, Brazil.

Departamento de Bioquímica e Imunologia, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, Ribeirão Preto, Brazil.

出版信息

Gene. 2019 Jun 5;700:70-84. doi: 10.1016/j.gene.2019.03.003. Epub 2019 Mar 14.

Abstract

Oxidative stress generated by hydrogen peroxide is faced by bacteria when encountering hostile environments. In order to define the physiological and regulatory networks controlling the oxidative stress response in the free-living bacterium Caulobacter crescentus, a whole transcriptome analysis of wild type and ΔoxyR strains in the presence of hydrogen peroxide for two different exposure times was carried out. The C. crescentus response to HO includes a decrease of the assimilative sulfate reduction and a shift in the amino acid synthesis pathways into favoring the synthesis of histidine. Moreover, the expression of genes encoding enzymes for the depolymerization of polyhydroxybutyrate was increased, and the RpoH-dependent genes were severely repressed. Based on the expression pattern and sequence analysis, we postulate that OxyR is probably directly required for the induction of three genes (katG, ahpCF). The putative binding of OxyR to the ahpC regulatory region could be responsible for the use of one of two alternative promoters in response to oxidative stress. Nevertheless, OxyR is required for the expression of 103 genes in response to HO. Fur and part of its regulon were differentially expressed in response to hydrogen peroxide independently of OxyR. The non-coding RNA OsrA was upregulated in both strains, and an in silico analysis indicated that it may have a regulatory role. This work characterizes the physiological response to HO in C. crescentus, the regulatory networks and differentially regulated genes in oxidative stress and the participation of OxyR in this process. It is proposed that besides OxyR, a second layer of regulation may be achieved by a small regulatory RNA and other transcriptional regulators.

摘要

当遇到恶劣环境时,细菌会面临由过氧化氢产生的氧化应激。为了定义控制自由生活细菌新月柄杆菌氧化应激反应的生理和调控网络,我们对野生型和ΔoxyR 菌株在过氧化氢存在下的转录组进行了全基因组分析,暴露时间为两个不同的时间。HO 引起的 C. crescentus 反应包括同化硫酸盐还原的减少,以及氨基酸合成途径向有利于组氨酸合成的转变。此外,多聚羟丁酸解聚酶编码酶的基因表达增加,RpoH 依赖性基因受到严重抑制。基于表达模式和序列分析,我们推测 OxyR 可能直接参与诱导三个基因(katG、ahpCF)的表达。OxyR 与 ahpC 调控区的可能结合可能负责在响应氧化应激时使用两个替代启动子之一。然而,OxyR 是响应 HO 表达 103 个基因所必需的。Fur 和其部分调控子在响应过氧化氢时独立于 OxyR 表达。非编码 RNA OsrA 在两种菌株中均上调,计算机分析表明它可能具有调节作用。这项工作描述了 C. crescentus 对 HO 的生理反应、氧化应激中的调控网络和差异调控基因,以及 OxyR 在这一过程中的参与。除了 OxyR,我们还提出第二个调控层可能由小调控 RNA 和其他转录因子实现。

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