Eady R R
Nitrogen Fixation Laboratory, University of Sussex, Brighton, UK.
Biofactors. 1988 Jul;1(2):111-6.
Fifty years after a role of vanadium in biological fixation was proposed, it was shown that in addition to their well-characterized molybdendum nitrogenases, Azotobacter chroococcum and Azotobacter vinelandii both have a genetically distinct nitrogenase system in which the conventional molybdoprotein is replaced by a vanadoprotein. Both Mo-nitrogenases and V-nitrogenases have similar requirements for activity: MgATP, a low potential reductant and the absence of oxygen. The genes encoding the V-nitrogenase are expressed only under conditions of Mo-deficiency. V-Nitrogenase of A.chroococcum is made up of a tetrameric VFe protein (Mr 210,000) with an alpha 2 beta 2 structure containing two V atoms, 23 Fe atoms and 20 acid-labile sulphide atoms per tetramer, and a dimeric Fe protein (Mr 64,000) with a gamma 2 structure containing four Fe atoms and four acid-labile sulphide atoms per dimer. Vanadium K-edge X-ray absorption spectroscopy indicates that V in the VFe protein, like Mo in MoFe protein, has S, Fe and possibly O as nearest neighbours. A vanadium- and iron-containing cofactor (FeVaco) can be extracted from the VFe protein and will restore C2H2 reductase, but no nitrogenase activity, to the inactive MoFe protein accumulated by mutants unable to synthesize the molybdenum- and iron-containing co-factor of Mo-nitrogenase. The products of C2H2 reduction by the hybrid protein (C2H6 as well as C2H4) are a characteristic of the VFe protein and provide evidence that FeVaco is, or forms part of the active site of V-nitrogenase.
在钒在生物固氮中的作用被提出50年后,研究表明,除了其特征明确的钼固氮酶外,褐球固氮菌和棕色固氮菌都有一个基因上不同的固氮酶系统,其中传统的钼蛋白被钒蛋白所取代。钼固氮酶和钒固氮酶对活性的要求相似:MgATP、低电位还原剂且无氧。编码钒固氮酶的基因仅在钼缺乏的条件下表达。褐球固氮菌的钒固氮酶由一个四聚体VFe蛋白(Mr 210,000)组成,其α2β2结构每个四聚体含有两个V原子、23个Fe原子和20个酸不稳定硫原子,以及一个二聚体Fe蛋白(Mr 64,000),其γ2结构每个二聚体含有四个Fe原子和四个酸不稳定硫原子。钒K边X射线吸收光谱表明,VFe蛋白中的V,与MoFe蛋白中的Mo一样,最近邻原子有S、Fe,可能还有O。一种含钒和铁的辅因子(FeVaco)可以从VFe蛋白中提取出来,并能将C2H2还原酶活性,但不能将固氮酶活性,恢复到因无法合成钼固氮酶的含钼和铁的辅因子而积累的无活性MoFe蛋白上。杂合蛋白还原C2H2的产物(C2H6以及C2H4)是VFe蛋白的特征,这为FeVaco是钒固氮酶的活性位点或其一部分提供了证据。