Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19711, USA.
Antioxid Redox Signal. 2010 Oct;13(8):1217-30. doi: 10.1089/ars.2010.3098.
Flavin-linked sulfhydryl oxidases participate in the net generation of disulfide bonds during oxidative protein folding in the endoplasmic reticulum. Members of the Quiescin-sulfhydryl oxidase (QSOX) family catalyze the facile direct introduction of disulfide bonds into unfolded reduced proteins with the reduction of molecular oxygen to generate hydrogen peroxide. Current progress in dissecting the mechanism of QSOX enzymes is reviewed, with emphasis on the CxxC motifs in the thioredoxin and Erv/ALR domains and the involvement of the flavin prosthetic group. The tissue distribution and intra- and extracellular location of QSOX enzymes are discussed, and suggestions for the physiological role of these enzymes are presented. The review compares the substrate specificity and catalytic efficiency of the QSOX enzymes with members of the Ero1 family of flavin-dependent sulfhydryl oxidases: enzymes believed to play key roles in disulfide generation in yeast and higher eukaryotes. Finally, limitations of our current understanding of disulfide generation in metazoans are identified and questions posed for the future.
黄素连接的巯基氧化酶参与内质网中氧化蛋白质折叠过程中形成二硫键的净生成。Quiescin-巯基氧化酶 (QSOX) 家族的成员可催化将二硫键轻易地直接引入到展开的还原蛋白中,同时将分子氧还原为过氧化氢。本文综述了 QSOX 酶的作用机制,重点介绍了硫氧还蛋白和 Erv/ALR 结构域中的 CxxC 基序以及黄素辅基的参与。讨论了 QSOX 酶的组织分布和细胞内外位置,并提出了这些酶的生理作用的建议。本文还比较了 QSOX 酶与依赖黄素的巯基氧化酶 Ero1 家族成员的底物特异性和催化效率:这些酶被认为在酵母和高等真核生物中二硫键的生成中发挥关键作用。最后,确定了我们目前对后生动物中二硫键生成理解的局限性,并为未来提出了问题。