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来自酿酒酵母的配体结合型saccharopine脱氢酶的晶体结构。

Crystal structures of ligand-bound saccharopine dehydrogenase from Saccharomyces cerevisiae.

作者信息

Andi Babak, Xu Hengyu, Cook Paul F, West Ann H

机构信息

Department of Chemistry and Biochemistry, University of Oklahoma, 620 Parrington Oval, Norman, Oklahoma 73019, USA.

出版信息

Biochemistry. 2007 Nov 6;46(44):12512-21. doi: 10.1021/bi701428m. Epub 2007 Oct 16.

Abstract

Three structures of saccharopine dehydrogenase (l-lysine-forming) (SDH) have been determined in the presence of sulfate, adenosine monophosphate (AMP), and oxalylglycine (OxGly). In the sulfate-bound structure, a sulfate ion binds in a cleft between the two domains of SDH, occupies one of the substrate carboxylate binding sites, and results in partial closure of the active site of the enzyme due to a domain rotation of almost 12 degrees in comparison to the apoenzyme structure. In the second structure, AMP binds to the active site in an area where the NAD+ cofactor is expected to bind. All of the AMP moieties (adenine ring, ribose, and phosphate) interact with specific residues of the enzyme. In the OxGly-bound structure, carboxylates of OxGly interact with arginine residues representative of the manner in which substrate (alpha-ketoglutarate and saccharopine) may bind. The alpha-keto group of OxGly interacts with Lys77 and His96, which are candidates for acid-base catalysis. Analysis of ligand-enzyme interactions, comparative structural analysis, corroboration with kinetic data, and discussion of a ternary complex model are presented in this study.

摘要

已在存在硫酸盐、单磷酸腺苷(AMP)和草酰甘氨酸(OxGly)的情况下测定了(形成L-赖氨酸的)酵母氨酸脱氢酶(SDH)的三种结构。在硫酸盐结合结构中,一个硫酸根离子结合在SDH两个结构域之间的裂隙中,占据底物羧酸盐结合位点之一,并由于与脱辅基酶结构相比约12度的结构域旋转而导致酶活性位点部分关闭。在第二种结构中,AMP在预期NAD+辅因子结合的区域与活性位点结合。所有AMP部分(腺嘌呤环、核糖和磷酸)均与酶的特定残基相互作用。在OxGly结合结构中,OxGly的羧酸盐与代表底物(α-酮戊二酸和酵母氨酸)可能结合方式的精氨酸残基相互作用。OxGly的α-酮基与Lys77和His96相互作用,这两个残基是酸碱催化的候选者。本研究介绍了配体-酶相互作用分析、比较结构分析、与动力学数据的佐证以及三元复合物模型的讨论。

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