Department of Biochemistry and Molecular Biology, Yeungnam University College of Medicine, Daegu 705-717, Republic of Korea.
Arch Biochem Biophys. 2012 Nov 1;527(1):1-5. doi: 10.1016/j.abb.2012.07.009. Epub 2012 Jul 31.
There have been insufficient kinetic data that enable a direct comparison between free and peptide methionine sulfoxide reductase activities of either MsrB or MsrA. In this study, we determined the kinetic parameters of mammalian and yeast MsrBs and MsrAs for the reduction of both free methionine sulfoxide (Met-O) and peptidyl Met-O under the same assay conditions. Catalytic efficiency of mammalian and yeast MsrBs towards free Met-O was >2000-fold lower than that of yeast fRMsr, which is specific for free Met-R-O. The ratio of free to peptide Msr activity in MsrBs was 1:20-40. In contrast, mammalian and yeast MsrAs reduced free Met-O much more efficiently than MsrBs. Their k(cat) values were 40-500-fold greater than those of the corresponding MsrBs. The ratio of free to peptide Msr activity was 1:0.8 in yeast MsrA, indicating that this enzyme can reduce free Met-O as efficiently as peptidyl Met-O. In addition, we analyzed the in vivo free Msr activities of MsrBs and MsrAs in yeast cells using a growth complementation assay. Mammalian and yeast MsrBs, as well as the corresponding MsrAs, had apparent in vivo free Msr activities. The in vivo free Msr activities of MsrBs and MsrAs agreed with their in vitro activities.
目前还缺乏能够直接比较 MsrB 或 MsrA 游离态和肽基甲硫氨酸亚砜还原酶活性的动力学数据。在这项研究中,我们在相同的测定条件下,测定了哺乳动物和酵母 MsrBs 和 MsrAs 还原游离甲硫氨酸亚砜(Met-O)和肽基甲硫氨酸亚砜的动力学参数。哺乳动物和酵母 MsrBs 对游离 Met-O 的催化效率比专门针对游离 Met-R-O 的酵母 fRMsr 低>2000 倍。MsrBs 中游离态和肽态 Msr 活性的比值为 1:20-40。相比之下,哺乳动物和酵母 MsrAs 比 MsrBs 更有效地还原游离 Met-O。它们的 k(cat) 值比相应的 MsrBs 高 40-500 倍。酵母 MsrA 中游离态和肽态 Msr 活性的比值为 1:0.8,表明该酶可以像肽基 Met-O 一样有效地还原游离 Met-O。此外,我们使用生长互补测定法分析了酵母细胞中 MsrBs 和 MsrAs 的体内游离 Msr 活性。哺乳动物和酵母 MsrBs 以及相应的 MsrAs 均具有明显的体内游离 Msr 活性。MsrBs 和 MsrAs 的体内游离 Msr 活性与体外活性一致。