Trujillo Madia, Alvarez Beatriz, Radi Rafael
a Departamento de Bioquímica , Facultad de Medicina, Universidad de la República , Montevideo , Uruguay .
b Center for Free Radical and Biomedical Research , Universidad de la República , Montevideo , Uruguay , and.
Free Radic Res. 2016;50(2):150-71. doi: 10.3109/10715762.2015.1089988. Epub 2015 Nov 11.
The oxidation of biothiols participates not only in the defense against oxidative damage but also in enzymatic catalytic mechanisms and signal transduction processes. Thiols are versatile reductants that react with oxidizing species by one- and two-electron mechanisms, leading to thiyl radicals and sulfenic acids, respectively. These intermediates, depending on the conditions, participate in further reactions that converge on different stable products. Through this review, we will describe the biologically relevant species that are able to perform these oxidations and we will analyze the mechanisms and kinetics of the one- and two-electron reactions. The processes undergone by typical low-molecular-weight thiols as well as the particularities of specific thiol proteins will be described, including the molecular determinants proposed to account for the extraordinary reactivities of peroxidatic thiols. Finally, the main fates of the thiyl radical and sulfenic acid intermediates will be summarized.
生物硫醇的氧化不仅参与抗氧化损伤防御,还参与酶催化机制和信号转导过程。硫醇是多功能还原剂,通过单电子和双电子机制与氧化物质反应,分别生成硫自由基和亚磺酸。这些中间体根据条件参与进一步反应,最终生成不同的稳定产物。通过本综述,我们将描述能够进行这些氧化反应的生物学相关物质,并分析单电子和双电子反应的机制及动力学。将描述典型低分子量硫醇所经历的过程以及特定硫醇蛋白的特性,包括为解释过氧化物硫醇的非凡反应性而提出的分子决定因素。最后,将总结硫自由基和亚磺酸中间体的主要归宿。