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Nitrogenase - Wikipedia
Nitrogenase is an enzyme responsible for catalyzing nitrogen fixation, which is the reduction of nitrogen (N 2) to ammonia (NH 3) and a process vital to sustaining life on Earth. [9] There are …
固氮酶 - 维基百科,自由的百科全书
固氮酶(英語: Nitrogenase )是一类在许多有机体中被利用于将空气中的氮气转化为含氮化合物的酶。这类酶是现在已被人们发现的唯一一种能完成该过程的酶。
固氮酶 - 百度百科
固氮酶是一种能够将氮分子还原成氨的酶。固氮酶是由两种蛋白质组成的:一种含有铁,叫做铁蛋白,另一种含铁和钼mo3+,称为钼铁蛋白。钼铁蛋白中含有7个铁,9个硫,1个钼,1个中心 …
Mechanism of Nitrogen Fixation by Nitrogenase: The Next Stage
2014年1月27日 · Key advances in understanding nitrogenase structure and function during those intervening years included the following: (i) It was determined that nitrogenase is a two …
Structural Enzymology of Nitrogenase Enzymes | Chemical Reviews
2020年6月15日 · The reduction of dinitrogen to ammonia by nitrogenase reflects a complex choreography involving two component proteins, MgATP and reductant. At center stage of this …
Nitrogenase - an overview | ScienceDirect Topics
Nitrogenase is a complex, bacterial enzyme that catalyzes the ATP-dependent reduction of dinitrogen (N 2) to ammonia (NH 3). In its most prevalent form, it consists of two proteins, the …
Structures of the nitrogenase complex prepared under ... - Science
2022年7月28日 · Nitrogenase is a two-component enzyme, which, in its most common form, consists of the iron protein FeP (a γ 2 homodimer) and the molybdenum-iron protein MoFeP …
Nitrogenase - an overview | ScienceDirect Topics
Nitrogenase is the bacterial enzyme that catalyzes the reduction of dinitrogen to ammonia and is an essential regulator of the biogeochemical nitrogen cycle. Nitrogenase is composed of two …
Nitrogenase: A Draft Mechanism - PMC - PubMed Central (PMC)
We seek to uncover the nitrogenase mechanism, which at minimum incorporates: (i) a reaction pathway that identifies each intermediate that forms, beginning with resting-state nitrogenase …
Unveiling the final nitrogenase - Nature Reviews Chemistry
2023年5月26日 · The final nitrogenase discovered, and the least understood, is the Fe-only nitrogenase. With Fe as the only metal in the active centre, the architecture of the FeFe …