固氮酶
化学
辅因子
酶
固氮
钼
催化作用
金属
分子
氮气
氧化还原
活动站点
氨
立体化学
结晶学
生物化学
无机化学
有机化学
作者
Lance C. Seefeldt,Brian M. Hoffman,Dennis R. Dean
标识
DOI:10.1146/annurev.biochem.78.070907.103812
摘要
Nitrogen-fixing bacteria catalyze the reduction of dinitrogen (N 2 ) to two ammonia molecules (NH 3 ), the major contribution of fixed nitrogen to the biogeochemical nitrogen cycle. The most widely studied nitrogenase is the molybdenum (Mo)-dependent enzyme. The reduction of N 2 by this enzyme involves the transient interaction of two component proteins, designated the iron (Fe) protein and the MoFe protein, and minimally requires 16 magnesium ATP (MgATP), eight protons, and eight electrons. The current state of knowledge on how these proteins and small molecules together effect the reduction of N 2 to ammonia is reviewed. Included is a summary of the roles of the Fe protein and MgATP hydrolysis, information on the roles of the two metal clusters contained in the MoFe protein in catalysis, insights gained from recent success in trapping substrates and inhibitors at the active-site metal cluster FeMo cofactor, and finally, considerations of the mechanism of N 2 reduction catalyzed by nitrogenase.
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