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产气荚膜梭菌中的氧化应激反应。

Oxidative stress response in Clostridium perfringens.

作者信息

Jean Delphine, Briolat Valérie, Reysset Gilles

机构信息

Unité de Génétique Moléculaire Bactérienne, Institut Pasteur, 28 rue du docteur Roux, 75724 Paris Cedex 15, France.

出版信息

Microbiology (Reading). 2004 Jun;150(Pt 6):1649-1659. doi: 10.1099/mic.0.27017-0.

Abstract

Clostridium perfringens, a strictly anaerobic bacterium, is able to survive when exposed to oxygen for short periods of time and exhibits a complex adaptive response to reactive oxygen species, both under aerobic and anaerobic conditions. However, this adaptive response is not completely understood. C. perfringens possesses specialized genes that might be involved in this adaptive process, such as those encoding superoxide dismutase (SOD), superoxide reductase and alkyl hydroperoxide reductase, but their contribution to the oxidative stress response and their control mechanisms are unknown. By a combination of functional complementation of Escherichia coli strains impaired in either SOD, alkyl hydroperoxide reductase (AhpC) or catalase activity (Cat), transcription analysis and characterization of mutants impaired in regulatory genes, it was concluded that: (i) the product of the sod gene is certainly essential to scavenge superoxide radicals, (ii) the ahpC gene, which is fully induced in all oxidative stress conditions, is probably involved in the scavenging of all intracellular peroxides, (iii) the three rubrerythrin (rbr) genes of C. perfringens do not encode proteins with in vivo H(2)O(2) reductase activity, and (iv) the two rubredoxin (rub) genes do not contribute to the hypothetical superoxide reductase activity, but are likely to belong to an electron transfer chain involved in energy metabolism.

摘要

产气荚膜梭菌是一种严格厌氧的细菌,能够在短时间暴露于氧气的情况下存活,并且在有氧和无氧条件下对活性氧均表现出复杂的适应性反应。然而,这种适应性反应尚未完全被理解。产气荚膜梭菌拥有可能参与这一适应性过程的特殊基因,例如那些编码超氧化物歧化酶(SOD)、超氧化物还原酶和烷基过氧化氢还原酶的基因,但其对氧化应激反应的贡献及其调控机制尚不清楚。通过对超氧化物歧化酶、烷基过氧化氢还原酶(AhpC)或过氧化氢酶活性(Cat)受损的大肠杆菌菌株进行功能互补、转录分析以及对调控基因受损的突变体进行表征,得出以下结论:(i)sod基因的产物对于清除超氧自由基肯定是必不可少的;(ii)在所有氧化应激条件下均被完全诱导的ahpC基因可能参与清除所有细胞内过氧化物;(iii)产气荚膜梭菌的三个红素氧还蛋白(rbr)基因不编码具有体内H₂O₂还原酶活性的蛋白质;(iv)两个铁氧化还原蛋白(rub)基因对假定的超氧化物还原酶活性没有贡献,但可能属于参与能量代谢的电子传递链。

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