Hoover T R, Robertson A D, Cerny R L, Hayes R N, Imperial J, Shah V K, Ludden P W
Department of Biochemistry, University of Wisconsin-Madison 53706.
Nature. 1987;329(6142):855-7. doi: 10.1038/329855a0.
Nitrogenase catalyses the ATP-dependent reduction of N2 to NH3, and is composed of two proteins, dinitrogenase (MoFe protein or component I) and dinitrogenase reductase (Fe protein or component II). Dinitrogenase contains a unique prosthetic group (iron-molybdenum cofactor, FeMoco) comprised of Fe, Mo and S, which has been proposed as the site of N2 reduction. Biochemical and genetic studies of Nif- (nitrogen fixation) mutants of Klebsiella pneumoniae which are defective in nitrogen fixation, have shown that the nifB, nifQ, nifN, nifE and nifV genes are required for the biosynthesis of FeMo-co. Recently, a system for in vitro synthesis of FeMoco was described. The assay requires at least the nifB, nifN and nifE gene products, and a low-molecular-weight factor (V factor) produced in the presence of the nifV gene product. We have used this system to study FeMoco biosynthesis. We report here the isolation of V factor and identify it as homocitric acid ([R]2-hydroxy-1,2,4-butanetricarboxylic acid).
固氮酶催化ATP依赖的N₂还原为NH₃,由两种蛋白质组成,即固氮酶(钼铁蛋白或组分I)和固氮酶还原酶(铁蛋白或组分II)。固氮酶含有一个独特的辅基(铁钼辅因子,FeMoco),由Fe、Mo和S组成,被认为是N₂还原的位点。肺炎克雷伯菌固氮(Nif-)突变体在固氮方面存在缺陷,其生化和遗传学研究表明,nifB、nifQ、nifN、nifE和nifV基因是FeMo-co生物合成所必需的。最近,描述了一种体外合成FeMoco的系统。该测定至少需要nifB、nifN和nifE基因产物,以及在nifV基因产物存在下产生的低分子量因子(V因子)。我们已使用该系统研究FeMoco的生物合成。我们在此报告V因子的分离,并将其鉴定为同柠檬酸([R]2-羟基-1,2,4-丁三羧酸)。