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结核分枝杆菌H37Rv烷基过氧化氢酶AhpC的特性表明离子相互作用在寡聚化和活性中的重要性。

Characterization of the Mycobacterium tuberculosis H37Rv alkyl hydroperoxidase AhpC points to the importance of ionic interactions in oligomerization and activity.

作者信息

Chauhan R, Mande S C

机构信息

Institute of Microbial Technology, Sector 39-A, Chandigarh 160 036, India.

出版信息

Biochem J. 2001 Feb 15;354(Pt 1):209-15. doi: 10.1042/0264-6021:3540209.

Abstract

An alkyl hydroperoxidase (AhpC) has been found frequently to be overexpressed in isoniazid-resistant strains of Mycobacterium tuberculosis. These strains have an inactivated katG gene encoding a catalase peroxidase, which might render mycobacteria susceptible to the toxic peroxide radicals, thus leading to the concomitant overexpression of the AhpC. Although the overexpressed AhpC in isoniazid-resistant strains of M. tuberculosis may not directly participate in isoniazid action, AhpC might still assist M. tuberculosis in combating oxidative damage in the absence of the catalase. Here we have attempted to characterize the AhpC protein biochemically and report its functional and oligomerization properties. The alkyl hydroperoxidase of M. tuberculosis is unique in many ways compared with its well-characterized homologues from enteric bacteria. We show that AhpC is a decameric protein, composed of five identical dimers held together by ionic interactions. Dimerization of individual subunits takes place through an intersubunit disulphide linkage. The ionic interactions play a significant role in enzymic activity of the AhpC protein. The UV absorption spectrum and three-dimensional model of AhpC suggest that interesting conformational changes may take place during oxidation and reduction of the intersubunit disulphide linkage. In the absence of the partner AhpF subunit in M. tuberculosis, the mycobacterial AhpC might use small-molecule reagents, such as mycothiol, for completing its enzymic cycle.

摘要

已发现烷基氢过氧化物酶(AhpC)在结核分枝杆菌耐异烟肼菌株中经常过度表达。这些菌株的katG基因失活,该基因编码过氧化氢酶过氧化物酶,这可能使分枝杆菌对有毒的过氧化物自由基敏感,从而导致AhpC伴随性过度表达。尽管结核分枝杆菌耐异烟肼菌株中过度表达的AhpC可能不直接参与异烟肼作用,但在没有过氧化氢酶的情况下,AhpC仍可能协助结核分枝杆菌对抗氧化损伤。在此,我们试图对AhpC蛋白进行生化特性分析,并报告其功能和寡聚化特性。与来自肠道细菌的已充分表征的同源物相比,结核分枝杆菌的烷基氢过氧化物酶在许多方面都很独特。我们表明AhpC是一种十聚体蛋白,由五个相同的二聚体通过离子相互作用结合在一起。单个亚基的二聚化通过亚基间二硫键连接发生。离子相互作用在AhpC蛋白的酶活性中起重要作用。AhpC的紫外吸收光谱和三维模型表明,在亚基间二硫键的氧化和还原过程中可能会发生有趣的构象变化。在结核分枝杆菌中缺乏伴侣AhpF亚基的情况下,分枝杆菌AhpC可能使用小分子试剂,如分枝硫醇,来完成其酶循环。

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