Anhui Provincial Key Laboratory of Molecular Enzymology and Mechanism of Major Diseases and Key Laboratory of Biomedicine in Gene Diseases and Health of Anhui Higher Education Institutes, Anhui Normal University, Wuhu, Anhui, China.
Anhui Province Key Laboratory of Active Biological Macro-molecules, Wannan Medical College, Wuhu, Anhui, China.
Protein Sci. 2021 Dec;30(12):2396-2407. doi: 10.1002/pro.4204. Epub 2021 Oct 23.
Many isocitrate dehydrogenases (IDHs) are dimeric enzymes whose catalytic sites are located at the intersubunit interface, whereas monomeric IDHs form catalytic sites with single polypeptide chains. It was proposed that monomeric IDHs were evolved from dimeric ones by partial gene duplication and fusion, but the evolutionary process had not been reproduced in laboratory. To construct a chimeric monomeric IDH from homo-dimeric one, it is necessary to reconstitute an active center by a duplicated region; to properly link the duplicated region to the rest part; and to optimize the newly formed protein surface. In this study, a chimeric monomeric IDH was successfully constructed by using homo-dimeric Escherichia coli IDH as a start point by rational design and site-saturation mutagenesis. The ~67 kDa chimeric enzyme behaved as a monomer in solution, with a K of 61 μM and a k of 15 s for isocitrate in the presence of NADP and Mn . Our result demonstrated that dimeric IDHs have a potential to evolve monomeric ones. The evolution of the IDH family was also discussed.
许多异柠檬酸脱氢酶(IDHs)是二聚体酶,其催化位点位于亚基间界面,而单体 IDH 则由单条多肽链形成催化位点。有人提出,单体 IDH 是通过部分基因复制和融合从二聚体进化而来的,但这一进化过程尚未在实验室中重现。为了从同二聚体构建杂合单体 IDH,有必要通过复制区域重新构建活性中心;正确地将复制区域与其余部分连接起来;并优化新形成的蛋白质表面。在这项研究中,通过合理设计和定点饱和突变,使用同二聚体大肠杆菌 IDH 作为起始点,成功构建了杂合单体 IDH。该~67 kDa 的杂合酶在溶液中表现为单体,在 NADP 和 Mn 存在下,其异柠檬酸的 K 为 61 μM,k 为 15 s。我们的结果表明,二聚体 IDH 具有进化为单体的潜力。还讨论了 IDH 家族的进化。