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鉴定 OxyR 作为一种负转录调控因子,可抑制白喉棒状杆菌过氧化氢酶的产生。

Characterization of OxyR as a negative transcriptional regulator that represses catalase production in Corynebacterium diphtheriae.

机构信息

Dept of Microbiology, University of Colorado School of Medicine, Aurora, Colorado, United States of America.

出版信息

PLoS One. 2012;7(3):e31709. doi: 10.1371/journal.pone.0031709. Epub 2012 Mar 16.

Abstract

Corynebacterium diphtheriae and Corynebacterium glutamicum each have one gene (cat) encoding catalase. In-frame Δcat mutants of C. diphtheriae and C. glutamicum were hyper-sensitive to growth inhibition and killing by H(2)O(2). In C. diphtheriae C7(β), both catalase activity and cat transcription decreased ~2-fold during transition from exponential growth to early stationary phase. Prototypic OxyR in Escherichia coli senses oxidative stress and it activates katG transcription and catalase production in response to H(2)O(2). In contrast, exposure of C. diphtheriae C7(β) to H(2)O(2) did not stimulate transcription of cat. OxyR from C. diphtheriae and C. glutamicum have 52% similarity with E. coli OxyR and contain homologs of the two cysteine residues involved in H(2)O(2) sensing by E. coli OxyR. In-frame ΔoxyR deletion mutants of C. diphtheriae C7(β), C. diphtheriae NCTC13129, and C. glutamicum were much more resistant than their parental wild type strains to growth inhibition by H(2)O(2). In the C. diphtheriae C7(β) ΔoxyR mutant, cat transcripts were about 8-fold more abundant and catalase activity was about 20-fold greater than in the C7(β) wild type strain. The oxyR gene from C. diphtheriae or C. glutamicum, but not from E. coli, complemented the defect in ΔoxyR mutants of C. diphtheriae and C. glutamicum and decreased their H(2)O(2) resistance to the level of their parental strains. Gel-mobility shift, DNaseI footprint, and primer extension assays showed that purified OxyR from C. diphtheriae C7(β) bound, in the presence or absence of DTT, to a sequence in the cat promoter region that extends from nucleotide position -55 to -10 with respect to the +1 nucleotide in the cat ORF. These results demonstrate that OxyR from C. diphtheriae or C. glutamicum functions as a transcriptional repressor of the cat gene by a mechanism that is independent of oxidative stress induced by H(2)O(2).

摘要

白喉棒状杆菌和谷氨酸棒状杆菌各有一个基因(cat)编码过氧化氢酶。白喉棒状杆菌和谷氨酸棒状杆菌的无框Δcat 突变体对生长抑制和过氧化氢(H2O2)杀伤非常敏感。在白喉棒状杆菌 C7(β)中,过氧化氢酶活性和 cat 转录在从指数生长期到早期静止期的转变过程中降低了约 2 倍。大肠杆菌中的原型 OxyR 感知氧化应激,并响应 H2O2 激活 katG 转录和过氧化氢酶的产生。相比之下,白喉棒状杆菌 C7(β)暴露于 H2O2 并未刺激 cat 的转录。白喉棒状杆菌和谷氨酸棒状杆菌的 OxyR 与大肠杆菌 OxyR 有 52%的相似性,并且包含大肠杆菌 OxyR 中参与 H2O2 感应的两个半胱氨酸残基的同源物。白喉棒状杆菌 C7(β)、白喉棒状杆菌 NCTC13129 和谷氨酸棒状杆菌的无框ΔoxyR 缺失突变体比其亲本野生型菌株对 H2O2 抑制生长的抗性强得多。在白喉棒状杆菌 C7(β)ΔoxyR 突变体中,cat 转录物的丰度约为 8 倍,过氧化氢酶活性约为 C7(β)野生型菌株的 20 倍。来自白喉棒状杆菌或谷氨酸棒状杆菌的 oxyR 基因,但不是来自大肠杆菌的 oxyR 基因,可弥补白喉棒状杆菌和谷氨酸棒状杆菌的ΔoxyR 突变体的缺陷,并将其对 H2O2 的抗性降低到其亲本菌株的水平。凝胶迁移率变动、DNaseI 足迹和引物延伸分析表明,在存在或不存在 DTT 的情况下,来自白喉棒状杆菌 C7(β)的纯化 OxyR 与 cat 启动子区域的一个序列结合,该序列相对于 cat ORF 的+1 核苷酸从核苷酸位置-55 延伸至-10。这些结果表明,白喉棒状杆菌或谷氨酸棒状杆菌的 OxyR 通过一种独立于 H2O2 诱导的氧化应激的机制,作为 cat 基因的转录抑制剂发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac00/3306370/f70e125b4589/pone.0031709.g001.jpg

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