Inoue J, Tomioka N, Itai A, Harayama S
Marine Biotechnology Institute, Iwate, Japan.
Biochemistry. 1998 Mar 10;37(10):3305-11. doi: 10.1021/bi970726g.
His51 in horse liver alcohol dehydrogenase (ADHE) has been proposed to act as a proton donor/acceptor in the NAD+/NADH-dependent oxidation/reduction of alcohol/aldehyde. The residue corresponding to His51 of ADHE is Val51 (Val45 in the protein sequence) in benzyl alcohol dehydrogenase (BADH) encoded by TOL plasmid pWW0. The 3-D structure of BADH modeled from the crystal structure of ADHE suggests that His47 (His41 in the protein sequence, corresponding to Arg47 in ADHE) of BADH would play the role of His51 in ADHE. To test this hypothesis, mutants of BADH, in which His47 was replaced by Gln(His47Gln) and/or Val51 was replaced by His (Val51His), were constructed. The kcat/K(m) value of the His47Gln mutant for benzyl alcohol was 125-fold lower than that of wild-type BADH, while the kcat/K(m) value of the His47Gln/Val51His double mutant was 12-fold higher than that of the His47Gln mutant. The kcat/K(m) value of the His47Gln mutant increased with increasing concentration of exogenous amines. These results suggest that His47 in wild-type BADH, exogenous amines in the His47Gln mutant, and His51 in the double mutant act as a general base catalyst during alcohol oxidation.
有人提出,马肝乙醇脱氢酶(ADHE)中的组氨酸51在NAD⁺/NADH依赖的乙醇/乙醛氧化/还原反应中充当质子供体/受体。由TOL质粒pWW0编码的苄醇脱氢酶(BADH)中,与ADHE的组氨酸51相对应的残基是缬氨酸51(蛋白质序列中的缬氨酸45)。根据ADHE的晶体结构模拟的BADH三维结构表明,BADH的组氨酸47(蛋白质序列中的组氨酸41,对应于ADHE中的精氨酸47)将发挥ADHE中组氨酸51的作用。为了验证这一假设,构建了BADH的突变体,其中组氨酸47被谷氨酰胺取代(His47Gln)和/或缬氨酸51被组氨酸取代(Val51His)。His47Gln突变体对苄醇的kcat/K(m)值比野生型BADH低125倍,而His47Gln/Val51His双突变体的kcat/K(m)值比His47Gln突变体高12倍。His47Gln突变体的kcat/K(m)值随着外源胺浓度的增加而增加。这些结果表明,野生型BADH中的组氨酸47、His47Gln突变体中的外源胺以及双突变体中的组氨酸51在乙醇氧化过程中充当通用碱催化剂。