Structural and Mechanistic Studies of Escherichia coli Nitroreductase with the Antibiotic Nitrofurazone

硝基还原酶 呋喃西林 黄蛋白 化学 辅因子 黄素组 大肠杆菌 立体化学 硝基 羟胺 硝基化合物 活动站点 生物化学 有机化学 医学 基因 传统医学 烷基
作者
Paul R. Race,Andrew L. Lovering,Richard M. Green,Abdelmijd Ossor,Scott A. White,Peter F. Searle,Christopher J. Wrighton,Eva I. Hyde
出处
期刊:Journal of Biological Chemistry [Elsevier BV]
卷期号:280 (14): 13256-13264 被引量:198
标识
DOI:10.1074/jbc.m409652200
摘要

The antibiotics nitrofurazone and nitrofurantoin are used in the treatment of genitourinary infections and as topical antibacterial agents. Their action is dependent upon activation by bacterial nitroreductase flavoproteins, including the Escherichia coli nitroreductase (NTR). Here we show that the products of reduction of these antibiotics by NTR are the hydroxylamine derivatives. We show that the reduction of nitrosoaromatics is enzyme-catalyzed, with a specificity constant ∼10,000-fold greater than that of the starting nitro compounds. This suggests that the reduction of nitro groups proceeds through two successive, enzyme-mediated reactions and explains why the nitroso intermediates are not observed. The global reaction rate for nitrofurazone determined in this study is over 10-fold higher than that previously reported, suggesting that the enzyme is much more active toward nitroaromatics than previously estimated. Surprisingly, in the crystal structure of the oxidized NTR-nitrofurazone complex, nitrofurazone is oriented with its amide group, rather than the nitro group to be reduced, positioned over the reactive N5 of the FMN cofactor. Free acetate, which acts as a competitive inhibitor with respect to NADH, binds in a similar orientation. We infer that the orientation of bound nitrofurazone depends upon the redox state of the enzyme. We propose that the charge distribution on the FMN rings, which alters upon reduction, is an important determinant of substrate binding and reactivity in flavoproteins with broad substrate specificity.
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