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From an inactive prokaryotic SOD homologue to an active protein through site-directed mutagenesis

机译:通过定点诱变从无活性的原核SOD同源物到活性蛋白

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It is known that several prokaryotic protein sequences, characterized by high homology with the eukaryotic Cu,ZnSODs, lack some of the metal ligands. In the present work, we have stepwise reintroduced the two missing copper ligands in the SOD-like protein of Bacillus subtilis, through site-directed mutagenesis. The mutant with three out of the four His that bind copper is not active, whereas the fully reconstituted mutant displays an activity of about 10% that of human Cu,ZnSOD. The mutated proteins have been characterized in solution and in the solid state. In solution, the proteins experience conformational disorder, which is believed to be partly responsible for the decreased enzymatic activity and sheds light on the tendency of several human SOD mutants to introduce mobility in the protein frame. In the crystal, on the contrary, the protein has a well-defined conformation, giving rise to dimers through the coordination of an exogenous zinc ion. The catalytic properties of the double mutant, which might be regarded as a step in an artificial evolution from a nonactive SOD to a fully functioning enzyme, are discussed on the basis of the structural and dynamical properties.
机译:众所周知,一些与真核Cu,ZnSODs具有高度同源性的原核蛋白序列缺少一些金属配体。在目前的工作中,我们已经通过定点诱变逐步地将枯草芽孢杆菌的SOD样蛋白中的两个缺失的铜配体重新引入。具有四个结合铜的组氨酸中的三个的突变体没有活性,而完全重组的突变体显示的活性约为人Cu,ZnSOD的10%。突变的蛋白已在溶液和固态中表征。在溶液中,蛋白质经历构象紊乱,据信这是酶活性降低的部分原因,并揭示了几种人类SOD突变体在蛋白质框架中引入迁移率的趋势。相反,在晶体中,蛋白质具有明确的构象,通过外源锌离子的配位产生二聚体。在结构和动力学性质的基础上,讨论了双突变体的催化特性,这可能被视为从无活性SOD到全功能酶的人工进化的一步。

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