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首页> 外文期刊>Biochemistry >Essential Role of the Linker Region in the Higher Catalytic Efficiency of a Bifunctional MsrA-MsrB Fusion Protein
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Essential Role of the Linker Region in the Higher Catalytic Efficiency of a Bifunctional MsrA-MsrB Fusion Protein

机译:接头区域在双功能MsrA-MsrB融合蛋白更高催化效率中的重要作用

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Many bacteria, particularly pathogens, possess methionine sulfoxide reductase A (MsrA) and B (MsrB) as a fusion form (MsrAB). However, it is not clear why they possess a fusion MsrAB form rather than the separate,enzymes that exist in most organisms. In this study, we performed biochemical and kinetic analyses of MsrAB from Treponema denticola (TdMsrAB), single-domain forms (TdMsrA and TdMsrB), and catalytic Cys mutants (TdMsrAB(C11S) and TdMsrAB(C285S)) We found that the catalytic efficiency of both MsrA and MsrB increased after fusion of the domains and that the linker region (iloop) that connects TdMsrA and TdMsrB is required for the higher catalytic efficiency of TdMsrAB. We also determined the crystal structure of TdMsrAB at 2.3 angstrom, showing that the iloop mainly interacts with TdMsrB via hydrogen bonds. Further kinetic analysis using the iloop mutants revealed that the iloop-TdMsrB interactions are critical to MsrB and MsrA activities. We also report the structure in which an oxidized form of dithiothreitol, an in vitro reductant for MsrA and MsrB, is present in the active site of TdMsrA. Collectively, the results of this study reveal an essential role of the iloop in maintaining the higher catalytic efficiency of the MsrAB fusion enzyme and provide a better understanding of why the MsrAB enzyme exists as a fused form.
机译:许多细菌,特别是病原体,具有甲硫氨酸亚砜还原酶A(MsrA)和B(MsrB)作为融合形式(MsrAB)。但是,尚不清楚为什么它们具有融合MsrAB形式而不是大多数生物体中存在的独立酶。在这项研究中,我们对密螺旋体(TdMsrAB),单域形式(TdMsrA和TdMsrB)和催化Cys突变体(TdMsrAB(C11S)和TdMsrAB(C285S))的MsrAB进行了生化和动力学分析。在域融合后,MsrA和MsrB的分子量都增加,并且连接TdMsrA和TdMsrB的接头区域(iloop)是TdMsrAB更高催化效率所必需的。我们还确定了2.3埃的TdMsrAB的晶体结构,表明iloop主要通过氢键与TdMsrB相互作用。使用iloop突变体的进一步动力学分析表明,iloop-TdMsrB相互作用对MsrB和MsrA活性至关重要。我们还报告了二硫苏糖醇(一种体外还原剂MsrA和MsrB)的氧化形式存在于TdMsrA的活性位点中的结构。总体而言,这项研究的结果揭示了iloop在维持MsrAB融合酶更高的催化效率方面的重要作用,并更好地理解了为什么MsrAB酶以融合形式存在。

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