Ugalde R A, Imperial J, Shah V K, Brill W J
J Bacteriol. 1985 Dec;164(3):1081-7. doi: 10.1128/jb.164.3.1081-1087.1985.
NifQ- and Mol- mutants of Klebsiella pneumoniae show an elevated molybdenum requirement for nitrogen fixation. Substitution of cystine for sulfate as the sulfur source in the medium reduced the molybdenum requirement of these mutants to levels required by the wild type. Cystine also increased the intracellular molybdenum accumulation of NifQ- and Mol- mutants. Cystine did not affect the molybdenum requirement or accumulation in wild-type K. pneumoniae. Sulfate transport and metabolism in K. pneumoniae were repressed by cystine. However, the effect of cystine on the molybdenum requirement could not be explained by an interaction between sulfate and molybdate at the transport level. Cystine increased the molybdenum requirement of Mol- mutants for nitrate reductase activity by at least 100-fold. Cystine had the same effect on the molybdenum requirement for nitrate reductase activity in Escherichia coli ChlD- mutants. This shows that cystine does not have a generalized effect on molybdenum metabolism. Millimolar concentrations of molybdate inhibited nitrogenase and nitrate reductase derepression with sulfate as the sulfur source, but not with cystine. The inhibition was the result of a specific antagonism of sulfate metabolism by molybdate. The effects of nifQ and mol mutations on nitrogenase could be suppressed either by the addition of cystine or by high concentrations of molybdate. This suggests that a sulfur donor and molybdenum interact at an early step in the biosynthesis of the iron-molybdenum cofactor. This interaction might occur nonenzymatically when the levels of the reactants are high.
肺炎克雷伯菌的NifQ和Mol突变体在固氮时对钼的需求量增加。在培养基中用胱氨酸替代硫酸盐作为硫源,可将这些突变体对钼的需求量降低至野生型所需的水平。胱氨酸还增加了NifQ和Mol突变体细胞内钼的积累。胱氨酸对野生型肺炎克雷伯菌的钼需求量或积累没有影响。肺炎克雷伯菌中的硫酸盐转运和代谢受到胱氨酸的抑制。然而,胱氨酸对钼需求量的影响无法通过硫酸盐和钼酸盐在转运水平上的相互作用来解释。胱氨酸使Mol突变体对硝酸还原酶活性的钼需求量增加了至少100倍。胱氨酸对大肠杆菌ChlD突变体中硝酸还原酶活性的钼需求量也有相同的影响。这表明胱氨酸对钼代谢没有普遍影响。以硫酸盐作为硫源时,毫摩尔浓度的钼酸盐会抑制固氮酶和硝酸还原酶的去阻遏,但以胱氨酸作为硫源时则不会。这种抑制是钼酸盐对硫酸盐代谢的特异性拮抗作用的结果。添加胱氨酸或高浓度的钼酸盐都可以抑制nifQ和mol突变对固氮酶的影响。这表明硫供体和钼在铁钼辅因子生物合成的早期步骤中相互作用。当反应物水平较高时,这种相互作用可能非酶促发生。