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固氮酶的能量转换:MgADP与钼铁蛋白的结合取决于铁硫“P”簇的氧化态。

Energy transduction by nitrogenase: binding of MgADP to the MoFe protein is dependent on the oxidation state of the iron-sulphur 'P' clusters.

作者信息

Miller R W, Smith B E, Eady R R

机构信息

Plant Research Centre, Agriculture Canada, Ottawa.

出版信息

Biochem J. 1993 May 1;291 ( Pt 3)(Pt 3):709-11. doi: 10.1042/bj2910709.

Abstract

Hydrolysis of MgATP to MgADP is essential for nitrogenase action. There is good evidence for binding of both nucleotides to the Fe protein of nitrogenase, but data indicating their binding to the MoFe protein have been controversial [see Miller and Eady (1989) Biochem. J. 263, 725-729]. The binding of MgADP to the MoFe protein of nitrogenase of Klebsiella pneumoniae was investigated by non-equilibrium gel-filtration column methods. No binding of MgADP to the dithionite-reduced protein could be detected. Treatment of the MoFe protein with phenosafranine [midpoint potential (Em) -270 mV] did not affect the activity, and oxidized the 'P' clusters but not the iron-molybdenum cofactor (FeMoco) centres. This oxidized species bound 3.9 mol of MgADP with a binding pattern characteristic of low rates of ligand dissociation. These observations suggest that the variability in published data on nucleotide binding to the MoFe protein is related to poor control of the protein oxidation level. Our data, coupled with the observation that 'P' clusters become oxidized during reduction of N2 [Lowe, Fisher and Thorneley (1993) Biochem. J., in the press], led us to propose that the ADP binding sites are transiently filled during enzyme turnover by hydrolysis of ATP originally bound to the Fe protein, and that hydrolysis occurs on a bridging site on the MoFe-Fe-protein complex.

摘要

MgATP水解为MgADP对于固氮酶的作用至关重要。有充分证据表明两种核苷酸都与固氮酶的铁蛋白结合,但有关它们与钼铁蛋白结合的数据一直存在争议[见Miller和Eady(1989年),《生物化学杂志》263卷,725 - 729页]。通过非平衡凝胶过滤柱方法研究了MgADP与肺炎克雷伯菌固氮酶的钼铁蛋白的结合情况。未检测到MgADP与连二亚硫酸盐还原的蛋白结合。用番红精[中点电位(Em)-270 mV]处理钼铁蛋白不影响其活性,且氧化了“P”簇但未氧化铁钼辅因子(FeMoco)中心。这种氧化态物质结合了3.9摩尔的MgADP,其结合模式具有配体解离速率低的特征。这些观察结果表明,已发表的关于核苷酸与钼铁蛋白结合的数据的变异性与对蛋白氧化水平的控制不佳有关。我们的数据,再加上在N2还原过程中“P”簇会被氧化的观察结果[Lowe、Fisher和Thorneley(1993年),《生物化学杂志》,即将发表],使我们提出,在酶周转过程中,ADP结合位点会被最初与铁蛋白结合的ATP水解所产生的MgADP瞬时填充,并且水解发生在钼铁 - 铁蛋白复合物的一个桥接位点上。

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