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在氨基酸47处含有替代的人β1β1醇脱氢酶变体的表达及动力学特性

Expression and kinetic characterization of variants of human beta 1 beta 1 alcohol dehydrogenase containing substitutions at amino acid 47.

作者信息

Hurley T D, Edenberg H J, Bosron W F

机构信息

Department of Biochemistry, Indiana University School of Medicine, Indianapolis 46202-5122.

出版信息

J Biol Chem. 1990 Sep 25;265(27):16366-72.

PMID:2398055
Abstract

Arg-47 of human beta 1 beta 1 alcohol dehydrogenase has been replaced with Lys, His, Gln, and Gly by site-directed mutagenesis. The mutated enzymes were expressed in Escherichia coli and purified to homogeneity. The recombinant enzymes with Arg and His at position 47 exhibit kinetic constants and stability which are similar to beta 1 beta 1 and beta 2 beta 2, respectively. The substitution of Lys, His, or Gln for Arg-47 resulted in active enzymes with lower affinity for coenzyme and higher Vmax values than beta 1 beta 1. The substitution of Gln at position 47 resulted in an enzyme with the highest Vmax for ethanol oxidation of any mammalian alcohol dehydrogenase. In this series of enzymes, the affinity for coenzyme decreases with decreasing pKa of the substituted amino acid side chains. The substitution of Gly at position 47 resulted in an enzyme with a Vmax that was one-half that of the low activity beta 1 beta 1 and coenzyme affinities that are lower than beta 1 beta 1, but are equal to or greater than the affinities exhibited by the His-47 or Gln-47 enzymes. Product inhibition studies indicated a change in mechanism from ordered Bi Bi for beta 1 beta 1 to rapid equilibrium random Bi Bi for the Gly-47 enzyme. The kinetic properties of the Gly-47 enzyme are substantially different from human liver alpha alpha which also has Gly at position 47.

摘要

通过定点诱变,人类β1β1醇脱氢酶的第47位精氨酸已被赖氨酸、组氨酸、谷氨酰胺和甘氨酸取代。突变酶在大肠杆菌中表达并纯化至同质。第47位为精氨酸和组氨酸的重组酶分别表现出与β1β1和β2β2相似的动力学常数和稳定性。用赖氨酸、组氨酸或谷氨酰胺取代第47位的精氨酸产生了活性酶,其对辅酶的亲和力低于β1β1,Vmax值高于β1β1。第47位为谷氨酰胺的取代产生了一种在所有哺乳动物醇脱氢酶中乙醇氧化Vmax最高的酶。在这一系列酶中,对辅酶的亲和力随着取代氨基酸侧链pKa的降低而降低。第47位为甘氨酸的取代产生了一种酶,其Vmax是低活性β1β1的一半,对辅酶的亲和力低于β1β1,但等于或大于第47位组氨酸或谷氨酰胺酶所表现出的亲和力。产物抑制研究表明,机制从β1β1的有序双底物双产物机制转变为第47位甘氨酸酶的快速平衡随机双底物双产物机制。第47位甘氨酸酶的动力学性质与同样在第47位为甘氨酸的人类肝脏αα酶有很大不同。

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