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Elucidation of stability determinants of cold-adapted monomeric isocitrate dehydrogenase from a psychrophilic bacterium, Colwellia maris, by construction of chimeric enzymes

机译:通过嵌合酶的构建,阐明了来自嗜冷细菌马氏单胞菌(Colwellia maris)的冷适应单体异柠檬酸脱氢酶的稳定性决定子

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摘要

To elucidate determinants of differences in thermostability between mesophilic and psychrophilic monomeric isocitrate dehydrogenases (IDHs) from Azotobacter vinelandii (AvIDH) and Colwellia maris (CmIDH), respectively, chimeric enzymes derived from the two IDHs were constructed based on the recently resolved three-dimensional structure of AvIDH, and several characteristics of the two wild-type and six chimeric IDHs were examined. These characteristics were then compared with those of dimeric IDH from Escherichia coli (EcIDH). All recombinant enzymes with a (His)6-tag attached to the N-terminal were overexpressed in the E. coli cells and purified by Ni2+-affinity chromatography. The catalytic activity (kcat) and catalytic efficiency (kcat/Km) of the wild-type AvIDH and CmIDH were higher than those of EcIDH, implying that an improved catalytic rate more than compensates for the loss of a catalytic site in the former two IDHs due to monomerization. Analyses of the thermostability and kinetic parameters of the chimeric enzymes indicated that region 2, corresponding to domain II, and particularly region 3 located in the C-terminal part of domain I, are involved in the thermolability of CmIDH, and that the corresponding two regions of AvIDH are important for exhibiting higher catalytic activity and affinity for isocitrate than CmIDH. The relationships between the stability, catalytic activity and structural characteristics of AvIDH and CmIDH are discussed.
机译:为了阐明决定因素,分别来自葡萄固氮菌(AvIDH)和玛氏菌(Cwellwell maris)(CmIDH)的中温和嗜温性单体异柠檬酸脱氢酶(IDH)之间的热稳定性差异,基于最近解析的三维结构,构建了源自两个IDH的嵌合酶的AvIDH,并检查了两个野生型和六个嵌合IDH的几个特征。然后将这些特征与来自大肠杆菌的二聚体IDH(EcIDH)的特征进行比较。在大肠杆菌细胞中过表达在N末端带有(His)6-标签的所有重组酶,并通过Ni2 +亲和层析纯化。野生型AvIDH和CmIDH的催化活性(kcat)和催化效率(kcat / Km)高于EcIDH,这意味着改进的催化速率可以弥补前两个IDH中催化位点的损失。由于单体化。嵌合酶的热稳定性和动力学参数的分析表明,对应于结构域II的区域2,尤其是位于结构域I的C末端部分的区域3,参与了CmIDH的可热化性,并且对应的两个区域与CmIDH相比,AvIDH的化合物对于展现更高的催化活性和对异柠檬酸的亲和力很重要。讨论了AvIDH和CmIDH的稳定性,催化活性和结构特征之间的关系。

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