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首页> 外文期刊>Journal of bacteriology >Biosynthesis of iron-molybdenum cofactor in the absence of nitrogenase.
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Biosynthesis of iron-molybdenum cofactor in the absence of nitrogenase.

机译:在不存在固氮酶的情况下生物合成铁钼辅因子。

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Klebsiella pneumoniae accumulates molybdenum during nitrogenase derepression. The molybdenum is primarily in nitrogenase component I in the form of iron-molybdenum cofactor (FeMo-co). Mutations in any of three genes (nifB, nifN, and nifE) involved in the biosynthesis of FeMo-co resulted in very low molybdenum accumulation and in a molybdenum-free nitrogenase component I. A mutant lacking both subunits of nitrogenase component I accumulated 60% of the amount of molybdenum present in the wild type. The molybdenum was in protein-bound form and behaved differently than that in the wild type with respect to electrophoretic mobility, size, and extractability by organic solvents. Two forms of molybdenum could be extracted from the protein fraction of the mutant; one of them was not detected in the wild type, and the other behaved like FeMo-co in nonaqueous gel filtration chromatography. Crude extracts of this mutant were able to complement in vitro K. pneumoniae or Azotobacter vinelandii mutants unable to produce FeMo-co. These data show that biosynthesis of FeMo-co does not require the presence of nitrogenase component I. In its absence, FeMo-co is accumulated on a different protein, presumably an intermediate in the normal FeMo-co biosynthetic pathway.
机译:肺炎克雷伯菌在固氮酶抑制期间会积累钼。钼主要以铁-钼辅因子(FeMo-co)的形式存在于固氮酶组分I中。 FeMo-co的生物合成涉及的三个基因(nifB,nifN和nifE)中的任何突变导致极低的钼积累和不含钼的固氮酶组分I。缺少固氮酶I的两个亚基的突变体积累60%野生型中钼的含量钼呈蛋白质结合形式,在电泳迁移率,大小和可被有机溶剂萃取方面,表现出与野生型不同的性能。可以从突变体的蛋白质级分中提取两种形式的钼。其中一个在野生型中未检测到,另一个在非水凝胶过滤色谱中的行为类似于FeMo-co。该突变体的粗提物能够补充不能产生FeMo-co的体外肺炎克雷伯氏菌或葡萄固氮菌突变体。这些数据表明FeMo-co的生物合成不需要存在固氮酶组分I。在不存在的情况下,FeMo-co积累在不同的蛋白质上,大概是正常的FeMo-co生物合成途径中的中间体。

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