Sakai Takahiro, Yamasaki Ai, Toyofuku Satoshi, Nishiki Tsuneo, Yunoki Michio, Komoto Noriaki, Tobimatsu Takamasa, Toraya Tetsuo
Department of Bioscience and Biotechnology, Faculty of Engineering, Okayama University, Tsushima-Naka, Okayama 700-8530, Japan.
J Nutr Sci Vitaminol (Tokyo). 2007 Apr;53(2):102-8. doi: 10.3177/jnsv.53.102.
Adenosylcobalamin-dependent diol dehydratase and glycerol dehydratase are isofunctional enzymes that catalyze the dehydration of 1,2-diols to the corresponding aldehydes. Although they bear different metabolic roles, both enzymes consist of three different subunits and possess a common (alphabetagamma)2 structure. To elucidate the roles of each subunit, we constructed expression plasmids for the hybrid dehydratases between diol dehydratase of Klebsiella oxytoca and glycerol dehydratase of Klebsiella pneumoniae in all the combinations of subunits by gene engineering techniques. All of the hybrid enzymes were produced in Escherichia coli at high levels, but only two hybrid enzymes consisting of the alpha subunit from glycerol dehydratase and the beta subunits from diol dehydratase showed high activity. The substrate specificity, the susceptibility to inactivation by glycerol, and the monovalent cation specificity of the wild type and hybrid enzymes were primarily determined by the origin of their alpha subunits.
腺苷钴胺素依赖性二醇脱水酶和甘油脱水酶是同功能酶,可催化1,2 -二醇脱水生成相应的醛。尽管它们具有不同的代谢作用,但这两种酶均由三个不同的亚基组成,并具有共同的(alphabetagamma)2结构。为了阐明每个亚基的作用,我们通过基因工程技术构建了所有亚基组合的产酸克雷伯菌二醇脱水酶和肺炎克雷伯菌甘油脱水酶之间的杂交脱水酶表达质粒。所有杂交酶均在大肠杆菌中高水平产生,但只有两种由甘油脱水酶的α亚基和二醇脱水酶的β亚基组成的杂交酶表现出高活性。野生型和杂交酶的底物特异性、对甘油失活的敏感性以及单价阳离子特异性主要由其α亚基的来源决定。