Smith B E, Eady R R, Lowe D J, Gormal C
A.F.R.C. I.P.S.R. Nitrogen Fixation Laboratory, University of Sussex, Brighton, U.K.
Biochem J. 1988 Feb 15;250(1):299-302. doi: 10.1042/bj2500299.
N-Methylformamide extracts of acid-treated precipitated VFe protein of the V-nitrogenase of Azotobacter chroococcum are yellow-brown in colour and contain vanadium, iron and acid-labile sulphur in the approximate proportions 1:6:5. E.p.r. spectra of the extracts exhibit a weak signal with g values near 4.5, 3.6 and 2.0 characteristic of an S = 3/2 metal-containing centre. The N-methylformamide extracts activated the MoFe protein polypeptides from mutants of nitrogen-fixing bacteria unable to synthesize FeMoco, the active centre of Mo-nitrogenase. The active hybrid protein exhibited the characteristic substrate-reducing phenotype associated with the VFe protein except that it could not reduce N2 to NH3. The above data are interpreted as demonstrating the existence of an iron- and vanadium-containing cofactor, FeVaco, within the VFe protein. It is suggested that nitrogen fixation requires specific interactions between FeVaco or FeMoco and their respective polypeptides. The biosynthesis of these cofactors is discussed.
褐球固氮菌钒固氮酶经酸处理沉淀的VFe蛋白的N-甲基甲酰胺提取物呈黄棕色,含有钒、铁和酸不稳定硫,其比例约为1:6:5。提取物的电子顺磁共振光谱显示出一个微弱信号,g值接近4.5、3.6和2.0,这是含S = 3/2金属中心的特征。N-甲基甲酰胺提取物激活了来自不能合成钼固氮酶活性中心FeMoco的固氮细菌突变体的MoFe蛋白多肽。活性杂合蛋白表现出与VFe蛋白相关的特征性底物还原表型,只是它不能将N2还原为NH3。上述数据被解释为证明VFe蛋白中存在一种含铁和钒的辅因子FeVaco。有人提出,固氮需要FeVaco或FeMoco与其各自的多肽之间有特定的相互作用。讨论了这些辅因子的生物合成。