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通过结构域互换构建的活性人酵母嵌合磷酸甘油酸激酶

Active human-yeast chimeric phosphoglycerate kinases engineered by domain interchange.

作者信息

Mas M T, Chen C Y, Hitzeman R A, Riggs A D

出版信息

Science. 1986 Aug 15;233(4765):788-90. doi: 10.1126/science.3526552.

Abstract

Phosphoglycerate kinase (PGK) is a monomeric protein composed of two domains of approximately equal size, connected by a hinge. Substrate-induced conformational change results in the closure of the active site cleft, which is situated between these two domains. In a study of the relations between structure and function of this enzyme, two interspecies hybrids were constructed, each composed of one domain from the human enzyme and one domain from the yeast enzyme. Despite a 35% difference in the amino acid composition between human and yeast PGK, catalytic properties of the hybrid enzymes are very similar to those of the parental proteins. This result demonstrates that the evolutionary substitutions within these two distantly related molecules do not significantly affect formation of the active site cleft, mechanism of domain closure, or enzyme activity itself.

摘要

磷酸甘油酸激酶(PGK)是一种单体蛋白,由两个大小近似相等的结构域组成,通过一个铰链相连。底物诱导的构象变化导致活性位点裂隙的闭合,该裂隙位于这两个结构域之间。在一项关于该酶结构与功能关系的研究中,构建了两个种间杂种,每个杂种由人类酶的一个结构域和酵母酶的一个结构域组成。尽管人类和酵母PGK的氨基酸组成有35%的差异,但杂种酶的催化特性与亲本蛋白非常相似。这一结果表明,这两个远缘相关分子内的进化替代不会显著影响活性位点裂隙的形成、结构域闭合机制或酶活性本身。

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