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肺炎克雷伯菌的固氮酶:过渡态复合物形成的动力学以及缺乏铁钼辅因子中心的钼铁蛋白构象改变的证据。

Nitrogenase of Klebsiella pneumoniae: kinetics of formation of the transition-state complex and evidence for an altered conformation of MoFe protein lacking a FeMoco centre.

作者信息

Yousafzai F K, Eady R R

机构信息

Nitrogen Fixation Laboratory, John Innes Centre, Colney, Norwich NR4 7UH, U.K.

出版信息

Biochem J. 1997 Sep 15;326 ( Pt 3)(Pt 3):637-40. doi: 10.1042/bj3260637.

Abstract

We have investigated the kinetics of inactivation of Mo-nitrogenase isolated from Klebsiella pneumoniae when it forms an inhibited putative transition-state complex on incubation with ADP and AlF4-. In the presence of excess Kp2 (Fe protein of the Mo-nitrogenase of K. pneumoniae), the kinetics were found to depend on the Mo content of Kp1 (the MoFe protein of Mo-nitrogenase of K. pneumoniae). The residual nitrogenase activity versus time of incubation using Kp1 preparations containing integral, i.e. one or two Mo atoms per molecule of Kp1, were essentially monophasic, but significantly different rates of inactivation were observed. In contrast, the progress curves for preparations of Kp1 with non-integral Mo content were biphasic, suggesting the presence of two discrete catalytically active species of Kp1. The best fit to the observed data was obtained with a two-exponential expression, the amplitude of which was consistent with the Mo content, provided that the fast phase of the reaction was assigned to a Kp1 species containing one, and the slow phase to a species containing two Mo atoms per alpha2beta2 tetramer. This analysis provides the first evidence for the existence of a catalytically active Kp1 species containing a single Mo atom. These data also indicate that MoFe protein which does not have all FeMoco binding sites occupied has an altered conformation compared with a fully loaded protein, and that the Fe protein reacts with these conformations at different rates to form the stable, but inhibited transition-state complex.

摘要

我们研究了从肺炎克雷伯菌中分离出的钼固氮酶在与ADP和AlF4-孵育形成抑制性假定过渡态复合物时的失活动力学。在过量的Kp2(肺炎克雷伯菌钼固氮酶的铁蛋白)存在下,发现动力学取决于Kp1(肺炎克雷伯菌钼固氮酶的钼铁蛋白)的钼含量。使用含有整数值(即每个Kp1分子一个或两个钼原子)的Kp1制剂,剩余固氮酶活性与孵育时间的关系基本呈单相,但观察到显著不同的失活速率。相比之下,钼含量非整数值的Kp1制剂的进程曲线是双相的,这表明存在两种离散的具有催化活性的Kp1物种。用双指数表达式能最好地拟合观察到的数据,其幅度与钼含量一致,前提是将反应的快速相归因于每个α2β2四聚体含有一个钼原子的Kp1物种,而慢速相归因于含有两个钼原子的物种。该分析首次证明了存在含有单个钼原子的具有催化活性的Kp1物种。这些数据还表明,并非所有FeMoco结合位点都被占据的钼铁蛋白与完全负载的蛋白相比具有改变的构象,并且铁蛋白与这些构象以不同速率反应以形成稳定但受抑制的过渡态复合物。

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本文引用的文献

1
Mechanism of Molybdenum Nitrogenase.钼固氮酶的作用机制。
Chem Rev. 1996 Nov 7;96(7):2983-3012. doi: 10.1021/cr950055x.
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Structural Basis of Biological Nitrogen Fixation.生物固氮的结构基础
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