Fundación IMDEA Energía, Centro de Biotecnología y Genómica de Plantas, Campus Montegancedo, Pozuelo de Alarcón 28223 Madrid, Spain.
Mol Microbiol. 2011 Mar;79(5):1182-93. doi: 10.1111/j.1365-2958.2011.07540.x. Epub 2011 Jan 25.
The major part of biological nitrogen fixation is catalysed by the molybdenum nitrogenase that carries at its active site the iron and molybdenum cofactor (FeMo-co). The nitrogen fixation (nif) genes required for the biosynthesis of FeMo-co are derepressed in the absence of a source of fixed nitrogen. The nifB gene product is remarkable because it assembles NifB-co, a complex cluster proposed to comprise a [6Fe-9S-X] cluster, from simpler [Fe-S] clusters common to other metabolic pathways. NifB-co is a common intermediate of the biosyntheses of the cofactors present in the molybdenum, vanadium and iron nitrogenases. In this work, the expression of the Azotobacter vinelandii nifB gene was uncoupled from its natural nif regulation to show that NifB protein levels are lower in cells growing diazotrophically than in cells growing at the expense of ammonium. A. vinelandii carries a duplicated copy of the ATPase component of the ubiquitous ClpXP protease (ClpX2), which is induced under nitrogen fixing conditions. Inactivation of clpX2 resulted in the accumulation of NifB and NifEN and a defect in diazotrophic growth, especially when iron was in short supply. Mutations in nifE, nifN and nifX or in nifA also affected NifB accumulation, suggesting that NifB susceptibility to degradation might vary during its catalytic cycle.
生物固氮的主要部分是由钼氮酶催化的,钼氮酶在其活性部位携带铁和钼辅因子(FeMo-co)。在没有固定氮源的情况下,合成 FeMo-co 所需的固氮(nif)基因被去阻遏。nifB 基因产物很显著,因为它组装了 NifB-co,这是一种复杂的簇,据推测由其他代谢途径中常见的更简单的 [Fe-S] 簇组成。NifB-co 是钼、钒和铁氮酶中存在的辅因子生物合成的共同中间体。在这项工作中,从其天然 nif 调控中分离出了 Azotobacter vinelandii nifB 基因的表达,结果表明,在固氮条件下生长的细胞中,NifB 蛋白水平低于以铵盐为代价生长的细胞。A. vinelandii 携带普遍存在的 ClpXP 蛋白酶(ClpX2)的 ATP 酶成分的重复拷贝,该成分在固氮条件下被诱导。clpX2 的失活导致 NifB 和 NifEN 的积累,并导致固氮生长缺陷,特别是在铁供应不足时。nifE、nifN 和 nifX 或 nifA 的突变也影响 NifB 的积累,这表明 NifB 对降解的敏感性可能在其催化循环中发生变化。