Department of Chemistry, School of Science, Tokai University, Kitakaname, Hiratsuka-shi, Kanagawa 259-1292, Japan.
Chemistry. 2011 Jan 10;17(2):481-5. doi: 10.1002/chem.201002742. Epub 2010 Dec 13.
To elucidate the reaction mechanism of the disulfide (SS) bond formation reaction of a polypeptide molecule with a water-soluble selenoxide reagent, trans-3,4-dihydroxyselenolane oxide (DHS(ox)), short-term oxidation experiments were carried out for the reduced state (R) of a recombinant hirudin CX-397 variant at pH 7.0 and 25 °C. In the reaction, R was oxidized sequentially to one-SS, two-SS, and three-SS intermediate ensembles within 1 min. The kinetic analysis revealed that the three second-order rate constants for the SS formation are proportional to the number of thiol groups existing in the reactant SS intermediates, indicating the stochastic nature of the SS formation. Ab initio calculation at the HF/6-31++G(d,p) level in water by using the polarizable continuum model suggested that the SS formation reaction is highly exothermic and proceeds via a reactive thioselenurane intermediate with a distorted linear O-Se-S linkage. The results clearly demonstrated that the rate-determining step of the SS formation reaction is the first bimolecular process between a thiol substrate and DHS(ox) rather than the subsequent process to release a SS product.
为了阐明多肽分子与水溶性硒氧化物试剂的二硫键 (SS) 形成反应的反应机制,在 pH 7.0 和 25°C 下,对重组水蛭素 CX-397 变体的还原态 (R) 进行了短期氧化实验。在反应中,R 在 1 分钟内顺序氧化为一个-SS、两个-SS 和三个-SS 中间体复合物。动力学分析表明,三个 SS 形成的二级速率常数与反应物 SS 中间体中存在的巯基数量成正比,表明 SS 形成具有随机性。使用极化连续体模型在 HF/6-31++G(d,p) 水平上进行的从头计算表明,SS 形成反应是高度放热的,并且通过具有扭曲线性 O-Se-S 键的反应性硒硫烷中间体进行。结果清楚地表明,SS 形成反应的速率决定步骤是硫醇底物和 DHS(ox)之间的第一个双分子过程,而不是释放 SS 产物的后续过程。