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结核分枝杆菌 WhiB4 调节氧化应激反应,从而调节体内的存活和传播。

Mycobacterium tuberculosis WhiB4 regulates oxidative stress response to modulate survival and dissemination in vivo.

机构信息

Immunology Group, International Centre for Genetic Engineering and Biotechnology, New Delhi 110067, India.

出版信息

Mol Microbiol. 2012 Sep;85(6):1148-65. doi: 10.1111/j.1365-2958.2012.08165.x. Epub 2012 Jul 26.

Abstract

Host-generated oxidative stress is considered one of the main mechanisms constraining Mycobacterium tuberculosis (Mtb) growth. The redox-sensing mechanisms in Mtb are not completely understood. Here we show that WhiB4 responds to oxygen (O₂) and nitric oxide (NO) via its 4Fe-4S cluster and controls the oxidative stress response in Mtb. The WhiB4 mutant (MtbΔwhiB4) displayed an altered redox balance and a reduced membrane potential. Microarray analysis demonstrated that MtbΔwhiB4 overexpresses the antioxidant systems including alkyl hydroperoxidase (ahpC-ahpD) and rubredoxins (rubA-rubB). DNA binding assays showed that WhiB4 [4Fe-4S] cluster is dispensable for DNA binding. However, oxidation of the apo-WhiB4 Cys thiols induced disulphide-linked oligomerization, DNA binding and transcriptional repression, whereas reduction reversed the effect. Furthermore, WhiB4 binds DNA with a preference for GC-rich sequences. Expression analysis showed that oxidative stress repressed whiB4 and induced antioxidants in Mtb, while their hyper-induction was observed in MtbΔwhiB4. MtbΔwhiB4 showed increased resistance to oxidative stress in vitro and enhanced survival inside the macrophages. Lastly, MtbΔwhiB4 displayed hypervirulence in the lungs of guinea pigs, but showed a defect in dissemination to their spleen. These findings suggest that WhiB4 systematically calibrates the activation of oxidative stress response in Mtb to maintain redox balance, and to modulate virulence.

摘要

宿主产生的氧化应激被认为是限制结核分枝杆菌(Mtb)生长的主要机制之一。Mtb 的氧化还原感应机制尚不完全清楚。在这里,我们表明 WhiB4 通过其 4Fe-4S 簇对氧气(O₂)和一氧化氮(NO)作出反应,并控制 Mtb 的氧化应激反应。WhiB4 突变体(MtbΔwhiB4)显示出氧化还原平衡改变和膜电位降低。微阵列分析表明,MtbΔwhiB4 过表达抗氧化系统,包括烷基过氧化物酶(ahpC-ahpD)和 rubredoxins(rubA-rubB)。DNA 结合实验表明,WhiB4 [4Fe-4S] 簇对于 DNA 结合不是必需的。然而,WhiB4 Cys 巯基的氧化诱导形成二硫键连接的寡聚物、DNA 结合和转录抑制,而还原则逆转了这一效应。此外,WhiB4 优先与富含 GC 的序列结合 DNA。表达分析表明,氧化应激抑制了 Mtb 中的 whiB4 和诱导了抗氧化剂,而在 MtbΔwhiB4 中则观察到它们的过度诱导。MtbΔwhiB4 在体外表现出对氧化应激的更高抗性,并在巨噬细胞内增强了存活能力。最后,MtbΔwhiB4 在豚鼠肺部表现出更高的毒力,但在其脾脏中传播能力缺陷。这些发现表明,WhiB4 系统地校准 Mtb 中氧化应激反应的激活,以维持氧化还原平衡,并调节毒力。

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