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在棕色固氮菌中钒固氮酶的铁-钒辅因子合成过程中,钒铁簇会在VnfX上积累。

A vanadium and iron cluster accumulates on VnfX during iron-vanadium-cofactor synthesis for the vanadium nitrogenase in Azotobacter vinelandii.

作者信息

Rüttimann-Johnson C, Staples C R, Rangaraj P, Shah V K, Ludden P W

机构信息

Department of Biochemistry, College of Agriculture and Life Sciences, University of Wisconsin, Madison, Wisconsin 53706, USA.

出版信息

J Biol Chem. 1999 Jun 18;274(25):18087-92. doi: 10.1074/jbc.274.25.18087.

Abstract

The vnf-encoded nitrogenase from Azotobacter vinelandii contains an iron-vanadium cofactor (FeV-co) in its active site. Little is known about the synthesis pathway of FeV-co, other than that some of the gene products required are also involved in the synthesis of the iron-molybdenum cofactor (FeMo-co) of the widely studied molybdenum-dinitrogenase. We have found that VnfX, the gene product of one of the genes contained in the vnf-regulon, accumulates iron and vanadium in a novel V-Fe cluster during synthesis of FeV-co. The electron paramagnetic resonance (EPR) and metal analyses of the V-Fe cluster accumulated on VnfX are consistent with a VFe7-8Sx precursor of FeV-co. The EPR spectrum of VnfX with the V-Fe cluster bound strongly resembles that of isolated FeV-co and a model VFe3S4 compound. The V-Fe cluster accumulating on VnfX does not contain homocitrate. No accumulation of V-Fe cluster on VnfX was observed in strains with deletions in genes known to be involved in the early steps of FeV-co synthesis, suggesting that it corresponds to a precursor of FeV-co. VnfX purified from a nifB strain incapable of FeV-co synthesis has a different electrophoretic mobility in native anoxic gels than does VnfX, which has the V-Fe cluster bound. NifB-co, the Fe and S precursor of FeMo-co (and presumably FeV-co), binds to VnfX purified from the nifB strain, producing a shift in its electrophoretic mobility on anoxic native gels. The data suggest that a precursor of FeV-co that contains vanadium and iron accumulates on VnfX, and thus, VnfX is involved in the synthesis of FeV-co.

摘要

来自棕色固氮菌的由vnf编码的固氮酶在其活性位点含有一个铁钒辅因子(FeV-co)。除了一些所需的基因产物也参与了广泛研究的钼二氮酶的铁钼辅因子(FeMo-co)的合成外,人们对FeV-co的合成途径知之甚少。我们发现,VnfX是vnf调控子中所含基因之一的基因产物,在FeV-co合成过程中,它在一个新型的V-Fe簇中积累铁和钒。对积累在VnfX上的V-Fe簇进行的电子顺磁共振(EPR)和金属分析与FeV-co的VFe7-8Sx前体一致。结合了V-Fe簇的VnfX的EPR谱与分离的FeV-co和模型VFe3S4化合物的EPR谱非常相似。积累在VnfX上的V-Fe簇不含高柠檬酸。在已知参与FeV-co合成早期步骤的基因缺失的菌株中,未观察到V-Fe簇在VnfX上的积累,这表明它对应于FeV-co的前体。从无法合成FeV-co的nifB菌株中纯化的VnfX在天然缺氧凝胶中的电泳迁移率与结合了V-Fe簇的VnfX不同。FeMo-co(可能还有FeV-co)的Fe和S前体NifB-co与从nifB菌株中纯化的VnfX结合后,在缺氧天然凝胶上其电泳迁移率发生了变化。数据表明,含有钒和铁的FeV-co前体在VnfX上积累,因此,VnfX参与了FeV-co的合成。

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