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固氮酶 P 簇 P 中间态的结构特征。

Structural characterization of the P intermediate state of the P-cluster of nitrogenase.

机构信息

From the Department of Chemistry and Biochemistry, Montana State University, Bozeman, Montana 59717.

Institute of Biological Chemistry, Washington State University, Pullman, Washington 99163.

出版信息

J Biol Chem. 2018 Jun 22;293(25):9629-9635. doi: 10.1074/jbc.RA118.002435. Epub 2018 May 2.

Abstract

Nitrogenase is the enzyme that reduces atmospheric dinitrogen (N) to ammonia (NH) in biological systems. It catalyzes a series of single-electron transfers from the donor iron protein (Fe protein) to the molybdenum-iron protein (MoFe protein) that contains the iron-molybdenum cofactor (FeMo-co) sites where N is reduced to NH The P-cluster in the MoFe protein functions in nitrogenase catalysis as an intermediate electron carrier between the external electron donor, the Fe protein, and the FeMo-co sites of the MoFe protein. Previous work has revealed that the P-cluster undergoes redox-dependent structural changes and that the transition from the all-ferrous resting (P) state to the two-electron oxidized P state is accompanied by protein serine hydroxyl and backbone amide ligation to iron. In this work, the MoFe protein was poised at defined potentials with redox mediators in an electrochemical cell, and the three distinct structural states of the P-cluster (P, P, and P) were characterized by X-ray crystallography and confirmed by computational analysis. These analyses revealed that the three oxidation states differ in coordination, implicating that the P state retains the serine hydroxyl coordination but lacks the backbone amide coordination observed in the P states. These results provide a complete picture of the redox-dependent ligand rearrangements of the three P-cluster redox states.

摘要

固氮酶是一种在生物系统中将大气中的二氮分子(N)还原为氨分子(NH)的酶。它催化一系列从供体铁蛋白(Fe 蛋白)到钼铁蛋白(MoFe 蛋白)的单电子转移,其中 MoFe 蛋白包含铁钼辅因子(FeMo-co)位点,在这些位点中二氮被还原为氨。MoFe 蛋白中的 P 簇在固氮酶催化中作为外部电子供体(Fe 蛋白)和 MoFe 蛋白的 FeMo-co 位点之间的中间电子载体。以前的工作表明,P 簇经历氧化还原依赖性的结构变化,并且从全亚铁静止(P)状态到二电子氧化的 P 状态的转变伴随着蛋白质丝氨酸羟基和骨架酰胺与铁的连接。在这项工作中,MoFe 蛋白在电化学电池中与氧化还原介体处于确定的电位,并且通过 X 射线晶体学和计算分析来表征 P 簇的三个不同结构状态(P、P 和 P)。这些分析表明,三种氧化态在配位上有所不同,暗示 P 态保留了丝氨酸羟基配位,但缺乏在 P 态中观察到的骨架酰胺配位。这些结果提供了 P 簇三种氧化还原态的氧化还原依赖性配体重排的完整图像。

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