木糖
四分体
化学
木糖代谢
还原酶
生物化学
醛酮还原酶
酶
醛还原酶
活动站点
选择性
氧化还原酶
立体化学
NAD+激酶
催化作用
基质(水族馆)
生物
遗传学
发酵
生态学
作者
Regina Kratzer,David K. Wilson,Bernd Nidetzky
出处
期刊:Iubmb Life
[Wiley]
日期:2006-09-01
卷期号:58 (9): 499-507
被引量:52
标识
DOI:10.1080/15216540600818143
摘要
Aldo-keto reductases (AKRs) constitute a large protein superfamily of mainly NAD(P)-dependent oxidoreductases involved in carbonyl metabolism. Catalysis is promoted by a conserved tetrad of active site residues (Tyr, Lys, Asp and His). Recent results of structure-function relationship studies for xylose reductase (AKR2B5) require an update of the proposed catalytic mechanism. Electrostatic stabilization by the epsilon-NH3+ group of Lys is a key source of catalytic power of xylose reductase. A molecular-level analysis of the substrate binding pocket of xylose reductase provides a case of how a very broadly specific AKR achieves the requisite selectivity for its physiological substrate and could serve as the basis for the design of novel reductases with improved specificities for biocatalytic applications.
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