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棕色固氮菌固氮酶的预稳态动力学。作为反应机制的一部分,ATP诱导固氮酶复合物构象变化的证据。

Pre-steady-state kinetics of nitrogenase from Azotobacter vinelandii. Evidence for an ATP-induced conformational change of the nitrogenase complex as part of the reaction mechanism.

作者信息

Duyvis M G, Wassink H, Haaker H

机构信息

Department of Biochemistry, Agricultural University, Dreijenlaan 3, 6703 HA Wageningen, The Netherlands.

出版信息

J Biol Chem. 1996 Nov 22;271(47):29632-6. doi: 10.1074/jbc.271.47.29632.

Abstract

The pre-steady-state electron transfer reactions of nitrogenase from Azotobacter vinelandii have been studied by stopped-flow spectrophotometry. With reduced nitrogenase proteins after the initial absorbance increase at 430 nm (which is associated with electron transfer from the Fe protein to the MoFe protein and is complete in 50 ms) the absorbance decreases, which, dependent on the ratio [Av2]/[Av1], is followed by an increase of the absorbance. The mixing of reductant-free nitrogenase proteins with MgATP leads after 20 ms to a decrease of the absorbance, which could be fitted (from 0. 05 to 1 s) with a single exponential decay with a rate constant kobs = 6.6 +/- 0.8 s-1. This reaction of nitrogenase was measured at different wavelengths. The data indicate the formation of a species with a blue shift of the absorbance of metal-sulfur clusters of nitrogenase from 430 to 360 nm. The absorbance decrease at 430 nm observed (after 50 ms) in the case of the reduced nitrogenase proteins could only be simulated well if, after the initial electron transfer from the Fe protein to the MoFe protein and before dissociation of the nitrogenase complex, an additional reaction was assumed. The rate constant of this reaction was of the same order as the rate constant of the MgATP-dependent pre-steady-state proton production by nitrogenase from A. vinelandii: kobs = 14 +/- 4 s-1 with reduced nitrogenase proteins and kobs = 6 +/- 2 s-1 with dithionite-free nitrogenase proteins (Duyvis, M. G., Wassink, H., and Haaker, H. (1994) Eur. J. Biochem. 225, 881-890). It is proposed that in the presence and absence of reductant, the observed absorbance decrease at 430 nm of nitrogenase is caused by a change of the conformation of the nitrogenase complex, as a consequence of hydrolysis of MgATP.

摘要

利用停流分光光度法研究了棕色固氮菌固氮酶的预稳态电子转移反应。对于还原态的固氮酶蛋白,在430nm处初始吸光度增加后(这与电子从铁蛋白转移到钼铁蛋白有关,50ms内完成),吸光度下降,随后根据[Av2]/[Av1]的比例,吸光度又会增加。无还原剂的固氮酶蛋白与MgATP混合20ms后吸光度下降,在0.05至1s范围内可拟合为单指数衰减,速率常数kobs = 6.6±0.8 s-1。在不同波长下测量了固氮酶的该反应。数据表明形成了一种物质,其使固氮酶金属硫簇的吸光度从430nm蓝移至360nm。只有在假设从铁蛋白到钼铁蛋白的初始电子转移后且在固氮酶复合物解离之前存在额外反应的情况下,才能很好地模拟还原态固氮酶蛋白在430nm处观察到的(50ms后)吸光度下降。该反应的速率常数与棕色固氮菌固氮酶MgATP依赖性预稳态质子产生的速率常数处于同一量级:还原态固氮酶蛋白时kobs = 14±4 s-1,无连二亚硫酸盐的固氮酶蛋白时kobs = 6±2 s-1(Duyvis, M. G., Wassink, H., and Haaker, H. (1994) Eur. J. Biochem. 225, 881-890)。有人提出,无论有无还原剂,观察到的固氮酶在430nm处的吸光度下降是由于MgATP水解导致固氮酶复合物构象变化引起的。

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