化学
草酸盐
活动站点
超氧化物
齿合度
过氧化氢
立体化学
基质(水族馆)
酶
金属
生物化学
无机化学
有机化学
海洋学
地质学
作者
Olaniyi Opaleye,Ruth‐Sarah Rose,Mei M. Whittaker,Eui‐Jeon Woo,James W. Whittaker,Richard W. Pickersgill
标识
DOI:10.1074/jbc.m510256200
摘要
Oxalate oxidase (EC 1.2.3.4) catalyzes the conversion of oxalate and dioxygen to hydrogen peroxide and carbon dioxide. In this study, glycolate was used as a structural analogue of oxalate to investigate substrate binding in the crystalline enzyme. The observed monodentate binding of glycolate to the active site manganese ion of oxalate oxidase is consistent with a mechanism involving C-C bond cleavage driven by superoxide anion attack on a monodentate coordinated substrate. In this mechanism, the metal serves two functions: to organize the substrates (oxalate and dioxygen) and to transiently reduce dioxygen. The observed structure further implies important roles for specific active site residues (two asparagines and one glutamine) in correctly orientating the substrates and reaction intermediates for catalysis. Combined spectroscopic, biochemical, and structural analyses of mutants confirms the importance of the asparagine residues in organizing a functional active site complex.
科研通智能强力驱动
Strongly Powered by AbleSci AI