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1.8 and 1.9 Å resolution structures of thePenicillium amagasakienseandAspergillus nigerglucose oxidases as a basis for modelling substrate complexes

黑曲霉 黄素组 化学 葡萄糖氧化酶 立体化学 氧化还原酶 活动站点 基质(水族馆) 氢键 黄素腺嘌呤二核苷酸 分子 生物化学 有机化学 辅因子 生物 生态学
作者
Gerd Wohlfahrt,Susanne Witt,J. Hendle,Dietmar Schomburg,Henryk M. Kalisz,Hans‐Jürgen Hecht
出处
期刊:Acta Crystallographica Section D-biological Crystallography [Wiley]
卷期号:55 (5): 969-977 被引量:332
标识
DOI:10.1107/s0907444999003431
摘要

Glucose oxidase is a flavin-dependent enzyme which catalyses the oxidation of beta-D-glucose by molecular oxygen to delta-gluconolactone and hydrogen peroxide. The structure of the enzyme from Aspergillus niger, previously refined at 2.3 A resolution, has been refined at 1.9 A resolution to an R value of 19.0%, and the structure of the enzyme from Penicillium amagasakiense, which has 65% sequence identity, has been determined by molecular replacement and refined at 1.8 A resolution to an R value of 16.4%. The structures of the partially deglycosylated enzymes have an r.m.s. deviation of 0.7 A for main-chain atoms and show four N-glycosylation sites, with an extended carbohydrate moiety at Asn89. Substrate complexes of the enzyme from A. niger were modelled by force-field methods. The resulting model is consistent with results from site-directed mutagenesis experiments and shows the beta-D-glucose molecule in the active site of glucose oxidase, stabilized by 12 hydrogen bonds and by hydrophobic contacts to three neighbouring aromatic residues and to flavin adenine dinucleotide. Other hexoses, such as alpha-D-glucose, mannose and galactose, which are poor substrates for the enzyme, and 2-deoxy-D-glucose, form either fewer bonds or unfavourable contacts with neighbouring amino acids. Simulation of the complex between the reduced enzyme and the product, delta-gluconolactone, has provided an explanation for the lack of product inhibition by the lactone.
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