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镁腺苷5'-三磷酸在棕色固氮菌固氮酶催化的析氢反应中的作用

Role of magnesium adenosine 5'-triphosphate in the hydrogen evolution reaction catalyzed by nitrogenase from Azotobacter vinelandii.

作者信息

Hageman R V, Orme-Johnson W H, Burris R H

出版信息

Biochemistry. 1980 May 27;19(11):2333-42. doi: 10.1021/bi00552a009.

Abstract

We have investigated the role of MgATP in the reaction catalyzed by nitrogenase from Azotobacter vinelandii. There is a rapid burst of ATP hydrolysis in the pre-steady-state reaction that occurs on the same time scale as the electron transfer from dinitrogenase reductase to dinitrogenase. This burst corresponds to two ATP's hydrolyzed per electron transferred between the two proteins. Two MgATP molecules are bound to dinitrogenase reductase with dissociation constants of 430 microM and 220 microM. Investigation of the effect of MgATP concentration on the pre-steady-state kinetics of electron transfer from dinitrogenase reductase to dinitrogenase showed that there are two MgATP's required for this reaction, and the Km values are 220 microM and 970 microM. These values are similar to the dissociation constants for MgATP from dinitrogenase reductase and indicate that electron transfer between the two proteins is substantially slower than the binding and dissociation of MgATP from dinitrogenase reductase. The Km values for MgATP in steady-state H2 evolution were 390 microM and 30 microM. The decrease in the value of the second Km indicates that a slow, irreversible step occurs after the electron transfer from dinitrogenase reductase to dinitrogenase. It is possible to predict quantitatively the steady-state kinetics from the pre-steady-state kinetics, and this shows that the MgATP dependence of electron transfer is sufficient to account for effects of MgATP concentration on the steady-state H2 evolution catalyzed by nitrogenase. The hydrolysis of two ATP molecules when an electron is transferred between the two proteins of the nitrogenase system is sufficient to account for all of the ATP hydrolysis occurring in the steady-state reaction. The simplified scheme proposed to account for the MgATP dependency of the nitrogenase reaction indicates that the only role of MgATP is in support of the electron transfer from dinitrogenase reductase to dinitrogenase.

摘要

我们研究了MgATP在由棕色固氮菌的固氮酶催化的反应中的作用。在预稳态反应中会有快速的ATP水解爆发,其发生的时间尺度与电子从固氮酶还原酶转移到固氮酶的时间尺度相同。这种爆发对应于每在两种蛋白质之间转移一个电子就有两个ATP被水解。两个MgATP分子以430微摩尔和220微摩尔的解离常数结合到固氮酶还原酶上。研究MgATP浓度对从固氮酶还原酶到固氮酶的电子转移预稳态动力学的影响表明,该反应需要两个MgATP,其Km值分别为220微摩尔和970微摩尔。这些值与MgATP从固氮酶还原酶的解离常数相似,表明两种蛋白质之间的电子转移比MgATP从固氮酶还原酶的结合和解离要慢得多。在稳态放氢中MgATP的Km值分别为390微摩尔和30微摩尔。第二个Km值的降低表明在电子从固氮酶还原酶转移到固氮酶之后发生了一个缓慢的、不可逆的步骤。可以从预稳态动力学定量预测稳态动力学,这表明电子转移对MgATP的依赖性足以解释MgATP浓度对固氮酶催化的稳态放氢的影响。当电子在固氮酶系统的两种蛋白质之间转移时,两个ATP分子的水解足以解释稳态反应中发生的所有ATP水解。为解释固氮酶反应对MgATP的依赖性而提出的简化方案表明,MgATP的唯一作用是支持电子从固氮酶还原酶转移到固氮酶。

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