Department of Molecular Biology and Biochemistry, University of California, Irvine, CA 92697, USA.
Dalton Trans. 2010 Mar 28;39(12):3124-30. doi: 10.1039/c000264j. Epub 2010 Feb 18.
Molybdenum (Mo)-dependent nitrogenase is a complex metalloprotein that catalyzes the biological reduction of dinitrogen (N(2)) to ammonia (NH(3)) at the molybdenum-iron cofactor (FeMoco) site of its molybdenum-iron (MoFe) protein component. Here we report the formation of a homocitrate-free, iron-molybdenum ("FeMo") cluster on the biosynthetic scaffold of FeMoco, NifEN. Such a NifEN-associated "FeMo" cluster exhibits EPR features similar to those of the NifEN-associated, fully-complemented "FeMoco", which originate from the presence of Mo in both cluster species; however, "FeMo" cluster and "FeMoco" display different temperature-dependent changes in the line shape and the signal intensity of their respective EPR features, which reflect the impact of homocitrate on the redox properties of these clusters. XAS/EXAFS analysis reveals that the Mo centers in both "FeMo" cluster and "FeMoco" are present in a similar coordination environment, although Mo in "FeMo" cluster is more loosely coordinated as compared to that in "FeMoco" with respect to the Mo-O distances in the cluster, likely due to the absence of homocitrate that normally serves as an additional ligand for the Mo in the cluster. Subsequent biochemical investigation of the "FeMo" cluster not only facilitates the determination of the sequence of events in the mobilization of Mo and homocitrate during FeMoco maturation, but also permits the examination of the role of homocitrate in the transfer of FeMoco between NifEN and MoFe protein. Combined outcome of these studies establishes a platform for future structural analysis of the interactions between NifEN and MoFe protein, which will provide useful insights into the mechanism of cluster transfer between the two proteins.
钼依赖型氮酶是一种复杂的金属蛋白,它在钼铁蛋白成分的钼铁(MoFe)辅因子(FeMoco)位点催化二氮(N2)的生物还原为氨(NH3)。在这里,我们报告了在 FeMoco 的生物合成支架 NifEN 上形成无同型柠檬酸的铁钼(“FeMo”)簇。这种与 NifEN 相关的“FeMo”簇表现出与完全互补的 NifEN 相关的“FeMoco”类似的 EPR 特征,这些特征源自两种簇物种中钼的存在;然而,“FeMo”簇和“FeMoco”显示出其各自 EPR 特征的线形状和信号强度随温度变化的不同,这反映了同型柠檬酸对这些簇的氧化还原性质的影响。XAS/EXAFS 分析表明,两种“FeMo”簇和“FeMoco”中的 Mo 中心都处于类似的配位环境中,尽管与“FeMoco”相比,“FeMo”簇中的 Mo 配位更松散,这可能是由于缺乏同型柠檬酸,同型柠檬酸通常作为簇中 Mo 的额外配体。随后对“FeMo”簇的生化研究不仅有助于确定在 FeMoco 成熟过程中 Mo 和同型柠檬酸的动员事件的顺序,而且还允许检查同型柠檬酸在 NifEN 和 MoFe 蛋白之间转移 FeMoco 中的作用。这些研究的综合结果为进一步研究 NifEN 和 MoFe 蛋白之间的相互作用提供了一个平台,这将为这两种蛋白质之间的簇转移机制提供有用的见解。