Cianci M, Gliubich F, Zanotti G, Berni R
Department of Organic Chemistry, University of Padua, Italy.
Biochim Biophys Acta. 2000 Aug 31;1481(1):103-8. doi: 10.1016/s0167-4838(00)00114-x.
Dihydrolipoate is an acceptor of the rhodanese-bound sulfane sulfur atom, as shown by analysis of the elementary steps of the reaction catalyzed by rhodanese. The crystal structure of sulfur-substituted rhodanese complexed with the non-reactive oxidized form of lipoate has revealed that the compound is bound at the enzyme active site, with the dithiolane ring buried in the interior of the cavity and the carboxylic end pointing towards the solvent. One of the sulfur atoms of the ligand in the unproductive complex is relatively close to the sulfane sulfur bound to Cys-247, the sulfur that is transferred during the catalytic reaction. This mode of binding of lipoate is likely to mimic that of dihydrolipoate. The results presented here support the possible role of dihydrolipoate as sulfur-acceptor substrate of rhodanese in an enzymatic reaction that might serve to provide iron-sulfur proteins with inorganic sulfide.
硫代硫酸转硫酶催化反应基本步骤的分析表明,二氢硫辛酸是硫代硫酸转硫酶结合的次硫酸硫原子的受体。硫代硫酸转硫酶与无反应性的氧化型硫辛酸形成的硫取代复合物的晶体结构显示,该化合物结合在酶的活性位点,二硫杂环戊烷环埋于腔内部,羧基端指向溶剂。在无活性复合物中,配体的一个硫原子相对靠近与半胱氨酸-247结合的次硫酸硫,即催化反应中转移的硫。硫辛酸的这种结合模式可能模拟二氢硫辛酸的结合模式。本文给出的结果支持了二氢硫辛酸作为硫代硫酸转硫酶在酶促反应中的硫受体底物的可能作用,该反应可能为铁硫蛋白提供无机硫化物。