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细菌抗氧化防御中的过氧化物酶

Peroxiredoxins in bacterial antioxidant defense.

作者信息

Dubbs James M, Mongkolsuk Skorn

机构信息

Laboratory of Biotechnology, Chulabhorn Research Institute, Lak Si, Bangkok 10210, Thailand.

出版信息

Subcell Biochem. 2007;44:143-93. doi: 10.1007/978-1-4020-6051-9_7.

Abstract

Peroxiredoxins constitute an important component of the bacterial defense against toxic peroxides. These enzymes use reactive cysteine thiols to reduce peroxides with electrons ultimately derived from reduced pyridine dinucleotides. Studies examining the regulation and physiological roles of AhpC, Tpx, Ohr and OsmC reveal the multilayered nature of bacterial peroxide defense. AhpC is localized in the cytoplasm and has a wide substrate range that includes H2O2, organic peroxides and peroxynitrite. This enzyme functions in both the control of endogenous peroxides, as well as in the inducible defense response to exogenous peroxides or general stresses. Ohr, OsmC and Tpx are organic peroxide specific. Tpx is localized to the periplasm and can be involved in either constitutive peroxide defense or participate in oxidative stress inducible responses depending on the organism. Ohr is an organic peroxide specific defense system that is under the control of the organic peroxide sensing repressor OhrR. In some organisms Ohr homologs are regulated in response to general stress. Clear evidence indicates that AhpC, Tpx and Ohr are involved in virulence. The role of OsmC is less clear. Regulation of OsmC expression is not oxidative stress inducible, but is controlled by multiple general stress responsive regulators.

摘要

过氧化物酶是细菌抵御有毒过氧化物的重要组成部分。这些酶利用活性半胱氨酸硫醇,最终从还原型吡啶二核苷酸获取电子来还原过氧化物。对AhpC、Tpx、Ohr和OsmC的调控及生理作用的研究揭示了细菌过氧化物防御的多层次性质。AhpC定位于细胞质中,底物范围广泛,包括过氧化氢、有机过氧化物和过氧亚硝酸盐。这种酶在内源过氧化物的控制以及对外源过氧化物或一般应激的诱导防御反应中均发挥作用。Ohr、OsmC和Tpx对有机过氧化物具有特异性。Tpx定位于周质,根据生物体的不同,可参与组成型过氧化物防御或参与氧化应激诱导反应。Ohr是一种有机过氧化物特异性防御系统,受有机过氧化物感应阻遏物OhrR的控制。在一些生物体中,Ohr同源物受一般应激的调控。确凿证据表明AhpC、Tpx和Ohr与毒力有关。OsmC的作用尚不清楚。OsmC表达的调控不是由氧化应激诱导的,而是受多种一般应激反应调节因子的控制。

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