Imperial J, Ugalde R A, Shah V K, Brill W J
J Bacteriol. 1984 Apr;158(1):187-94. doi: 10.1128/jb.158.1.187-194.1984.
NifQ- mutants of Klebsiella pneumoniae are defective in nitrogen fixation due to an elevated requirement for molybdenum. When millimolar concentrations of molybdate were added to the medium, the effects of the nifQ mutations were suppressed. NifQ- mutants were not impaired in the uptake of molybdate, but molybdate accumulation was defective in these mutants. All of the nif-coded proteins were present in NifQ- cells derepressed in the absence of molybdenum. Molybdenum-activatable nitrogenase component I was found at the same level observed in the wild type. Molybdenum, thus, does not play a role in nif expression or in the short-term stability of nif-coded proteins. The defect in NifQ- mutants was in the incorporation of molybdenum into nitrogenase component I. The nifQ gene product acts together with the products of nifB, nifN, and nifE in the biosynthesis of the iron-molybdenum cofactor of nitrogenase.
肺炎克雷伯菌的NifQ-突变体由于对钼的需求增加而在固氮方面存在缺陷。当向培养基中添加毫摩尔浓度的钼酸盐时,nifQ突变的影响被抑制。NifQ-突变体在钼酸盐摄取方面没有受损,但这些突变体中钼酸盐的积累存在缺陷。所有由nif编码的蛋白质都存在于在无钼条件下解除阻遏的NifQ-细胞中。发现钼可激活的固氮酶组分I的水平与野生型中观察到的相同。因此,钼在nif表达或nif编码蛋白质的短期稳定性中不起作用。NifQ-突变体的缺陷在于将钼掺入固氮酶组分I中。nifQ基因产物在固氮酶铁钼辅因子的生物合成中与nifB、nifN和nifE的产物共同起作用。