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Sequential and differential interaction of assembly factors during nitrogenase MoFe protein maturation

机译:固氮酶MoFe蛋白成熟过程中装配因子的顺序和差异相互作用

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摘要

Nitrogenases reduce atmospheric nitrogen, yielding the basic inorganic molecule ammonia. The nitrogenase MoFe protein contains two cofactors, a [7Fe-9S-Mo-C-homocitrate] active-site species, designated FeMo-cofactor, and a [8Fe-7S] electron-transfer mediator called P-cluster. Both cofactors are essential for molybdenum-dependent nitrogenase catalysis in the nitrogen-fixing bacterium Azotobacter vinelandii. We show here that three proteins, NafH, NifW, and NifZ, copurify with MoFe protein produced by an A. vinelandii strain deficient in both FeMo-cofactor formation and P-cluster maturation. In contrast, two different proteins, NifY and NafY, copurified with MoFe protein deficient only in FeMo-cofactor formation. We refer to proteins associated with immature MoFe protein in the following as “assembly factors.” Copurifications of such assembly factors with MoFe protein produced in different genetic backgrounds revealed their sequential and differential interactions with MoFe protein during the maturation process. We found that these interactions occur in the order NafH, NifW, NifZ, and NafY/NifY. Interactions of NafH, NifW, and NifZ with immature forms of MoFe protein preceded completion of P-cluster maturation, whereas interaction of NafY/NifY preceded FeMo-cofactor insertion. Because each assembly factor could independently bind an immature form of MoFe protein, we propose that subpopulations of MoFe protein–assembly factor complexes represent MoFe protein captured at different stages of a sequential maturation process. This suggestion was supported by separate isolation of three such complexes, MoFe protein–NafY, MoFe protein–NifY, and MoFe protein–NifW. We conclude that factors involved in MoFe protein maturation sequentially bind and dissociate in a dynamic process involving several MoFe protein conformational states.
机译:固氮酶还原大气中的氮,产生碱性无机分子氨。固氮酶MoFe蛋白包含两个辅助因子,一个称为[FeFe-辅因子]的[7Fe-9S-Mo-C-同源]活性位点物种,和一个称为P-簇的[8Fe-7S]电子传递介体。在固氮细菌葡萄固氮菌中,这两个辅助因子对于钼依赖性固氮酶催化都是必不可少的。我们在这里显示了三种蛋白质,NafH,NifW和NifZ,与A.vinelandii菌株产生的MoFe蛋白共纯化,而这些菌株既缺乏FeMo辅因子形成又缺乏P簇成熟。相反,两种不同的蛋白NifY和NafY与仅在FeMo辅因子形成中缺乏的MoFe蛋白共纯化。在下文中,我们将与未成熟MoFe蛋白质相关的蛋白质称为“装配因子”。这些组装因子与在不同遗传背景下产生的MoFe蛋白的共纯化显示出它们在成熟过程中与MoFe蛋白的顺序和差异相互作用。我们发现这些相互作用以NafH,NifW,NifZ和NafY / NifY的顺序发生。 NafH,NifW和NifZ与不成熟形式的MoFe蛋白质的相互作用先于P簇成熟,而NafY / NifY的相互作用先于FeMo辅因子插入。因为每个装配因子都可以独立地结合未成熟形式的MoFe蛋白,所以我们建议MoFe蛋白-装配因子复合物的亚群代表了在顺序成熟过程的不同阶段捕获的MoFe蛋白。分开分离这三种复合物即MoFe蛋白– NafY,MoFe蛋白– NifY和MoFe蛋白– NifW可以支持该建议。我们得出结论,涉及MoFe蛋白成熟的因子在涉及几个MoFe蛋白构象状态的动态过程中顺序结合和解离。

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