Burnell J C, Carr L G, Dwulet F E, Edenberg H J, Li T K, Bosron W F
Biochem Biophys Res Commun. 1987 Aug 14;146(3):1127-33. doi: 10.1016/0006-291x(87)90779-0.
The beta 3 beta 3 (formerly called beta Indianapolis) and beta 1 beta 1 isoenzymes of human alcohol dehydrogenase differ substantially in their catalytic properties. Specifically, the KM value for NAD+ of beta 3 beta 3 is 70 times greater than that of beta 1 beta 1, and the Ki value for NADH is 35 times greater than that of beta 1 beta 1. To identify the structural basis of these catalytic differences, we sequenced regions of the beta 3 subunit and the beta 3 gene. beta 3 differs from beta 1 by the substitution of Cys for Arg-369. Based on x-ray crystallography of horse ADH, Arg-369 should interact with the nicotinamide phosphate moiety of NAD(H). The Cys for Arg-369 substitution would decrease the enzyme's affinity for coenzyme and, thus, account for the observed kinetic differences between beta 3 beta 3 and beta 1 beta 1.
人类乙醇脱氢酶的β3β3(以前称为β印第安纳波利斯型)和β1β1同工酶在催化特性上有很大差异。具体而言,β3β3对NAD+的KM值比β1β1的大70倍,对NADH的Ki值比β1β1的大35倍。为了确定这些催化差异的结构基础,我们对β3亚基和β3基因的区域进行了测序。β3与β1的不同之处在于用半胱氨酸取代了第369位的精氨酸。根据马乙醇脱氢酶的X射线晶体学研究,第369位精氨酸应与NAD(H)的烟酰胺磷酸部分相互作用。用半胱氨酸取代第369位精氨酸会降低酶对辅酶的亲和力,从而解释了观察到的β3β3和β1β1之间的动力学差异。