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结核分枝杆菌单半胱氨酸过氧化物酶AhpE的硫醇和亚磺酸氧化:动力学、酸度常数和构象动力学

Thiol and sulfenic acid oxidation of AhpE, the one-cysteine peroxiredoxin from Mycobacterium tuberculosis: kinetics, acidity constants, and conformational dynamics.

作者信息

Hugo Martín, Turell Lucía, Manta Bruno, Botti Horacio, Monteiro Gisele, Netto Luis E S, Alvarez Beatriz, Radi Rafael, Trujillo Madia

机构信息

Departamento de Bioqumica, Facultad de Medicina, Center for Free Radical and Biomedical Research, Universidad de la República, Montevideo, Uruguay.

出版信息

Biochemistry. 2009 Oct 13;48(40):9416-26. doi: 10.1021/bi901221s.

Abstract

Drug resistance and virulence of Mycobacterium tuberculosis are partially related to the pathogen's antioxidant systems. Peroxide detoxification in this bacterium is achieved by the heme-containing catalase peroxidase and different two-cysteine peroxiredoxins. M. tuberculosis genome also codifies for a putative one-cysteine peroxiredoxin, alkyl hydroperoxide reductase E (MtAhpE). Its expression was previously demonstrated at a transcriptional level, and the crystallographic structure of the recombinant protein was resolved under reduced and oxidized states. Herein, we report that the conformation of MtAhpE changed depending on its single cysteine redox state, as reflected by different tryptophan fluorescence properties and changes in quaternary structure. Dynamics of fluorescence changes, complemented by competition kinetic assays, were used to perform protein functional studies. MtAhpE reduced peroxynitrite 2 orders of magnitude faster than hydrogen peroxide (1.9 x 10(7) M(-1) s(-1) vs 8.2 x 10(4) M(-1) s(-1) at pH 7.4 and 25 degrees C, respectively). The latter also caused cysteine overoxidation to sulfinic acid, but at much slower rate constant (40 M(-1) s(-1)). The pK(a) of the thiol in the reduced enzyme was 5.2, more than one unit lower than that of the sulfenic acid in the oxidized enzyme. The pH profile of hydrogen peroxide-mediated thiol and sulfenic acid oxidations indicated thiolate and sulfenate as the reacting species. The formation of sulfenic acid as well as the catalytic peroxidase activity of MtAhpE was demonstrated using the artificial reducing substrate thionitrobenzoate. Taken together, our results indicate that MtAhpE is a relevant component in the antioxidant repertoire of M. tuberculosis probably involved in peroxide and specially peroxynitrite detoxification.

摘要

结核分枝杆菌的耐药性和毒力部分与该病原体的抗氧化系统有关。该细菌中的过氧化物解毒是通过含血红素的过氧化氢酶过氧化物酶和不同的双半胱氨酸过氧化物还原酶实现的。结核分枝杆菌基因组还编码一种假定的单半胱氨酸过氧化物还原酶,即烷基过氧化氢还原酶E(MtAhpE)。其表达先前已在转录水平得到证实,并且重组蛋白的晶体结构在还原态和氧化态下均已解析。在此,我们报告MtAhpE的构象根据其单个半胱氨酸的氧化还原状态而变化,这通过不同的色氨酸荧光特性和四级结构变化得以体现。荧光变化动力学,辅以竞争动力学测定,被用于进行蛋白质功能研究。MtAhpE还原过氧亚硝酸盐的速度比过氧化氢快2个数量级(在pH 7.4和25℃时,分别为1.9×10⁷ M⁻¹ s⁻¹ 对8.2×10⁴ M⁻¹ s⁻¹)。后者还导致半胱氨酸过度氧化为亚磺酸,但速率常数要慢得多(40 M⁻¹ s⁻¹)。还原态酶中硫醇的pKₐ为5.2,比氧化态酶中亚磺酸的pKₐ低一个多单位。过氧化氢介导的硫醇和亚磺酸氧化的pH曲线表明硫醇盐和亚磺酸盐是反应物种。使用人工还原底物硫代硝基苯甲酸盐证明了亚磺酸的形成以及MtAhpE的催化过氧化物酶活性。综上所述,我们的结果表明MtAhpE是结核分枝杆菌抗氧化系统中的一个相关组分,可能参与过氧化物特别是过氧亚硝酸盐的解毒。

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