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与类固醇底物复合的胆固醇氧化酶的晶体结构:对黄素腺嘌呤二核苷酸依赖性醇氧化酶的启示。

Crystal structure of cholesterol oxidase complexed with a steroid substrate: implications for flavin adenine dinucleotide dependent alcohol oxidases.

作者信息

Li J, Vrielink A, Brick P, Blow D M

机构信息

Blackett Laboratory, Imperial College, London, England.

出版信息

Biochemistry. 1993 Nov 2;32(43):11507-15.

PMID:8218217
Abstract

Cholesterol oxidase from Brevibacterium sterolicum is a flavin-dependent enzyme that catalyzes the oxidation and isomerization of 3 beta-hydroxy steroids with a double bond at delta 5-delta 6 of the steroid ring backbone. The crystal structure of the free enzyme in the absence of a steroid substrate has previously been determined. In this paper we report the crystal structure of the complex of cholesterol oxidase with the steroid substrate dehydroisoandrosterone, refined at 1.8-A resolution. The final crystallographic R-value is 15.7% for all reflections between 10.0- and 1.8-A resolution. The steroid is buried within the protein in an internal cavity which, in the free enzyme crystal structure, was occupied by a lattice of water molecules. The conformations of a number of side chains lining the active-site cavity have changed in order to accommodate the steroid substrate. A loop region of the structure between residues 70 and 90 differs significantly between the substrate-free and substrate-bound forms of the enzyme, presumably to facilitate binding of the steroid. The hydroxyl group of the steroid substrate is hydrogen-bonded to both the flavin ring system of the FAD cofactor and a bound water molecule. FAD-dependent cholesterol oxidase shares significant structural homology with another flavoenzyme, glucose oxidase, suggesting that it might also be a member of the glucose-methanol-choline (GMC) oxidoreductase family. Although there is only limited sequence homology, a superposition of these two structures reveals a conserved histidine residue within hydrogen-bonding distance of the active-site water molecule.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

来自短杆菌属的胆固醇氧化酶是一种黄素依赖性酶,它催化甾体环骨架在δ5-δ6处具有双键的3β-羟基甾体的氧化和异构化。先前已经确定了无甾体底物时游离酶的晶体结构。在本文中,我们报道了胆固醇氧化酶与甾体底物脱氢异雄酮复合物的晶体结构,其在1.8 Å分辨率下进行了精修。对于10.0 - 1.8 Å分辨率之间的所有反射,最终晶体学R值为15.7%。甾体被埋在蛋白质内部的一个腔内,在游离酶晶体结构中,该腔被水分子晶格占据。为了容纳甾体底物,活性位点腔内衬的一些侧链构象发生了变化。该结构中70至90位残基之间的环区域在无底物和有底物结合形式的酶之间有显著差异,推测这有助于甾体的结合。甾体底物的羟基与FAD辅因子的黄素环系统以及一个结合的水分子形成氢键。FAD依赖性胆固醇氧化酶与另一种黄素酶葡萄糖氧化酶具有显著的结构同源性,这表明它可能也是葡萄糖 - 甲醇 - 胆碱(GMC)氧化还原酶家族的一员。尽管只有有限的序列同源性,但这两种结构的叠加显示在活性位点水分子的氢键距离内有一个保守的组氨酸残基。

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