Budde Heike, Flohé Leopold, Hofmann Birgit, Nimtz Manfred
Department of Biochemistry, Technical University of Braunschweig, Mascheroder Weg 1, 38124 Braunschweig.
Biol Chem. 2003 Sep;384(9):1305-9. doi: 10.1515/BC.2003.146.
Tryparedoxin peroxidases (TXNPx) catalyze hydroperoxide reduction by tryparedoxin (TXN) by an enzyme substitution mechanism presumed to involve three catalytic intermediates: (i) a transient oxidation state having C52 oxidized to a sulfenic acid, (ii) the stable oxidized form with C52 disulfide-bound to C173', and (iii) a semi-reduced intermediate with C40 of TXN disulfide-linked to C173' from which the ground state enzyme is regenerated by thiol/disulfide reshuffling. This kinetically unstable form was mimmicked by a dead-end intermediate generated by cooxidation of TXNPx of Trypanosoma brucei brucei with an inhibitory mutein of TXN in which C43 was replaced by serine (TbTXNC43S). Cleavage of the isolated dead-end intermediate by trypsin plus chymotrypsin yielded a fragment that complied in size with the TbTXNC43S sequence 36 to 44 disulfide-linked to the TbTXNPx sequence 169 to 177. The presumed nature of the proteolytic fragment was confirmed by MS/MS sequencing. The results provide direct chemical evidence for the assumption that the reductive part of the catalysis is initiated by an attack of the substrate's solvent-exposed C40 on C173' of the oxidized peroxidase and, thus, confirm the hypothesis on the interaction of 2-Cys-peroxiredoxins with their proteinaceous substrates.
锥虫硫氧还蛋白过氧化物酶(TXNPx)通过锥虫硫氧还蛋白(TXN)以一种酶替代机制催化氢过氧化物还原,该机制推测涉及三种催化中间体:(i)一种瞬态氧化态,其中C52被氧化为亚磺酸;(ii)稳定的氧化形式,C52与C173'形成二硫键;(iii)一种半还原中间体,TXN的C40与C173'形成二硫键,通过硫醇/二硫键重排从中再生出基态酶。这种动力学上不稳定的形式被布氏布氏锥虫TXNPx与TXN的一种抑制性突变体(其中C43被丝氨酸取代,即TbTXNC43S)共氧化产生的终产物中间体模拟。用胰蛋白酶加胰凝乳蛋白酶切割分离出的终产物中间体,得到一个片段,其大小与TbTXNC43S序列36至44与TbTXNPx序列169至177形成二硫键相符。通过串联质谱测序证实了蛋白水解片段的推测性质。这些结果为以下假设提供了直接的化学证据:催化的还原部分由底物溶剂暴露的C40对氧化过氧化物酶的C173'的攻击引发,从而证实了关于2-半胱氨酸过氧化物酶与其蛋白质底物相互作用的假说。