Department of Biological Chemistry, University of Michigan Medical Center, Ann Arbor, Michigan 48109-0600, USA.
J Biol Chem. 2013 Jul 5;288(27):20002-13. doi: 10.1074/jbc.M113.466177. Epub 2013 May 22.
Mercaptopyruvate sulfurtransferase (MST) is a source of endogenous H2S, a gaseous signaling molecule implicated in a wide range of physiological processes. The contribution of MST versus the other two H2S generators, cystathionine β-synthase and γ-cystathionase, has been difficult to evaluate because many studies on MST have been conducted at high pH and have used varied reaction conditions. In this study, we have expressed, purified, and crystallized human MST in the presence of the substrate 3-mercaptopyruvate (3-MP). The kinetics of H2S production by MST from 3-MP was studied at pH 7.4 in the presence of various physiological persulfide acceptors: cysteine, dihydrolipoic acid, glutathione, homocysteine, and thioredoxin, and in the presence of cyanide. The crystal structure of MST reveals a mixture of the product complex containing pyruvate and an active site cysteine persulfide (Cys(248)-SSH) and a nonproductive intermediate in which 3-MP is covalently linked via a disulfide bond to an active site cysteine. The crystal structure analysis allows us to propose a detailed mechanism for MST in which an Asp-His-Ser catalytic triad is positioned to activate the nucleophilic cysteine residue and participate in general acid-base chemistry, whereas our kinetic analysis indicates that thioredoxin is likely to be the major physiological persulfide acceptor for MST.
巯基丙酮酸硫转移酶(MST)是内源性 H2S 的来源,H2S 作为一种气态信号分子,参与了广泛的生理过程。MST 与其他两种 H2S 生成酶(胱硫醚-β-合酶和γ-胱硫醚酶)的贡献很难评估,因为许多关于 MST 的研究都是在高 pH 值下进行的,并且使用了不同的反应条件。在这项研究中,我们在底物 3-巯基丙酮酸(3-MP)存在的情况下表达、纯化并结晶了人 MST。在各种生理 persulfide 受体(半胱氨酸、二氢硫辛酸、谷胱甘肽、同型半胱氨酸和硫氧还蛋白)存在下以及氰化物存在下,研究了 MST 从 3-MP 产生 H2S 的动力学。MST 的晶体结构揭示了产物复合物(包含丙酮酸)和活性位点半胱氨酸过硫化物(Cys(248)-SSH)的混合物,以及非生产性中间产物,其中 3-MP 通过二硫键与活性位点半胱氨酸共价连接。晶体结构分析使我们能够提出 MST 的详细机制,其中 Asp-His-Ser 催化三联体定位以激活亲核半胱氨酸残基并参与一般的酸碱化学,而我们的动力学分析表明,硫氧还蛋白可能是 MST 的主要生理 persulfide 受体。