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两种生物合成酶的诱导有助于大肠杆菌在过氧化氢胁迫期间维持血红素合成并激活过氧化氢酶。

The induction of two biosynthetic enzymes helps Escherichia coli sustain heme synthesis and activate catalase during hydrogen peroxide stress.

作者信息

Mancini Stefano, Imlay James A

机构信息

Department of Microbiology, University of Illinois, Urbana, IL, 61801, USA.

出版信息

Mol Microbiol. 2015 May;96(4):744-63. doi: 10.1111/mmi.12967. Epub 2015 Mar 16.

Abstract

Hydrogen peroxide pervades many natural environments, including the phagosomes that mediate cell-based immunity. Transcriptomic analysis showed that during protracted low-grade H(2)O(2) stress, Escherichia coli responds by activating both the OxyR defensive regulon and the Fur iron-starvation response. OxyR induced synthesis of two members of the nine-step heme biosynthetic pathway: ferrochelatase (HemH) and an isozyme of coproporphyrinogen III oxidase (HemF). Mutations that blocked either adaptation caused the accumulation of porphyrin intermediates, inadequate activation of heme enzymes, low catalase activity, defective clearance of H(2)O(2) and a failure to grow. Genetic analysis indicated that HemH induction is needed to compensate for iron sequestration by the mini-ferritin Dps. Dps activity protects DNA and proteins by limiting Fenton chemistry, but it interferes with the ability of HemH to acquire the iron that it needs to complete heme synthesis. HemF is a manganoprotein that displaces HemN, an iron-sulfur enzyme whose synthesis and/or stability is apparently problematic during H(2)O(2) stress. Thus, the primary responses to H(2)O(2), including the sequestration of iron, require compensatory adjustments in the mechanisms of iron-cofactor synthesis. The results support the growing evidence that oxidative stress is primarily an iron pathology.

摘要

过氧化氢存在于许多自然环境中,包括介导细胞免疫的吞噬体。转录组分析表明,在长期低度过氧化氢胁迫期间,大肠杆菌通过激活OxyR防御调节子和Fur铁饥饿反应作出应答。OxyR诱导了九步血红素生物合成途径中两个成员的合成:亚铁螯合酶(HemH)和粪卟啉原III氧化酶的一种同工酶(HemF)。阻断任何一种适应过程的突变都会导致卟啉中间体的积累、血红素酶的激活不足、过氧化氢酶活性低下、过氧化氢清除缺陷以及生长失败。遗传分析表明,需要诱导HemH来补偿小铁蛋白Dps对铁的螯合。Dps活性通过限制芬顿化学反应来保护DNA和蛋白质,但它会干扰HemH获取其完成血红素合成所需铁的能力。HemF是一种锰蛋白,它取代了HemN,HemN是一种铁硫酶,其合成和/或稳定性在过氧化氢胁迫期间显然存在问题。因此,对过氧化氢的主要应答,包括铁的螯合,需要在铁辅因子合成机制中进行补偿性调整。这些结果支持了越来越多的证据,即氧化应激主要是一种铁病理学现象。

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