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烟酰胺腺嘌呤二核苷酸在脱氢酶之间转移的分子基础。

Molecular basis for the transfer of nicotinamide adenine dinucleotide among dehydrogenases.

作者信息

Srivastava D K, Bernhard S A, Langridge R, McClarin J A

出版信息

Biochemistry. 1985 Jan 29;24(3):629-35. doi: 10.1021/bi00324a014.

Abstract

NADH is transferred directly from one dehydrogenase enzyme site to another without intervention of the aqueous solvent whenever the two dehydrogenases are of opposite chiral specificity as regards the C4 H of NADH which is transferred in the catalyzed reduction reaction. When both enzymes catalyze the transfer of hydrogen from the same face of the nicotinamide ring, direct enzyme-enzyme transfer of NADH is not possible [Srivastava, D. K., & Bernhard, S. A. (1984) Biochemistry 23, 4538-4545; Srivastava, D. K., & Bernhard, S. A. (1985) Biochemistry (preceding paper in this issue)]. Utilizing an advanced computer graphics facility, and the known three-dimensional coordinates for three dehydrogenases, we have investigated the feasibility of various aspects of the direct transfer of dinucleotide from the site of one enzyme to the site of the other. The facile passage of the coenzyme through the first enzyme site requires an open protein conformation, characteristic of the apoenzyme rather than the holoenzyme structure. Since two dehydrogenases of the same chirality bind coenzyme in the same conformation, the direct transfer of coenzyme from one site to the other is impossible due to the restriction in molecular rotation of the coenzyme in the path of transfer from one binding site to the other; therefore, coenzyme can only be transferred from one dehydrogenase site to another site via the intermediate dissociation of coenzyme into the aqueous milieu. In contrast, when an A dehydrogenase and a B dehydrogenase are juxtaposed, it is stereochemically feasible to transfer the nicotinamide ring from its specific binding site in one enzyme to the site in the other.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在催化还原反应中,只要两种脱氢酶对所转移的NADH的C4 H具有相反的手性特异性,NADH就会直接从一个脱氢酶酶位点转移到另一个位点,而无需水相溶剂的干预。当两种酶都催化从烟酰胺环同一面转移氢时,NADH的直接酶 - 酶转移是不可能的[Srivastava, D. K., & Bernhard, S. A. (1984) Biochemistry 23, 4538 - 4545; Srivastava, D. K., & Bernhard, S. A. (1985) Biochemistry(本期前一篇论文)]。利用先进的计算机图形设备以及三种脱氢酶的已知三维坐标,我们研究了二核苷酸从一种酶的位点直接转移到另一种酶的位点的各个方面的可行性。辅酶在第一个酶位点的顺利通过需要开放的蛋白质构象,这是脱辅酶而非全酶结构的特征。由于具有相同手性的两种脱氢酶以相同构象结合辅酶,辅酶在从一个结合位点转移到另一个结合位点的路径中分子旋转受到限制,因此辅酶不可能从一个位点直接转移到另一个位点;所以,辅酶只能通过辅酶在水相中解离的中间过程从一个脱氢酶位点转移到另一个位点。相比之下,当A脱氢酶和B脱氢酶并列时,将烟酰胺环从一种酶中的特定结合位点转移到另一种酶中的位点在立体化学上是可行的。(摘要截短于250字)

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