Van Stappen Casey, Jiménez-Vicente Emilio, Pérez-González Ana, Yang Zhi-Yong, Seefeldt Lance C, DeBeer Serena, Dean Dennis R, Decamps Laure
Max Planck Institute for Chemical Energy Conversion Stiftstrasse 34-36 45470 Mülheim an der Ruhr Germany
Department of Biochemistry, Virginia Polytechnic Institute and State University Blacksburg VA 24061 USA.
Chem Sci. 2022 Feb 28;13(12):3489-3500. doi: 10.1039/d1sc06418e. eCollection 2022 Mar 24.
Reduction of dinitrogen by molybdenum nitrogenase relies on complex metalloclusters: the [8Fe:7S] P-cluster and the [7Fe:9S:Mo:C:homocitrate] FeMo-cofactor. Although both clusters bear topological similarities and require the reductive fusion of [4Fe:4S] sub-clusters to achieve their respective assemblies, P-clusters are assembled directly on the NifDK polypeptide prior to the insertion of FeMo-co, which is fully assembled separately from NifDK. P-cluster maturation involves the iron protein NifH as well as several accessory proteins, whose role has not been elucidated. In the present work, two NifDK species bearing immature P-clusters were isolated from an strain in which the genes encoding NifH and the accessory protein NifZ were deleted, and characterized by X-ray absorption spectroscopy and EPR. These analyses showed that both NifDK complexes harbor clusters that are electronically and structurally similar, with each NifDK unit containing two [4Fe:4S] clusters. Binding of the accessory protein NifW parallels a decrease in the distance between these clusters, as well as a subtle change in their coordination. These results support a conformational role for NifW in P-cluster biosynthesis, bringing the two [4Fe:4S] precursors closer prior to their fusion, which may be crucial in challenging cellular contexts.
[8铁:7硫] P簇和[7铁:9硫:钼:碳:高柠檬酸]铁钼辅因子。尽管这两种簇在拓扑结构上有相似之处,且都需要[4铁:4硫]亚簇的还原融合来实现各自的组装,但P簇在铁钼辅因子插入之前直接在NifDK多肽上组装,而铁钼辅因子是与NifDK分开完全组装的。P簇成熟涉及铁蛋白NifH以及几种辅助蛋白,其作用尚未阐明。在本研究中,从一株缺失编码NifH和辅助蛋白NifZ基因的菌株中分离出两种带有未成熟P簇的NifDK物种,并通过X射线吸收光谱和电子顺磁共振进行了表征。这些分析表明,两种NifDK复合物都含有在电子和结构上相似的簇,每个NifDK单元包含两个[4铁:4硫]簇。辅助蛋白NifW的结合与这些簇之间距离的减小以及它们配位的细微变化同时发生。这些结果支持了NifW在P簇生物合成中的构象作用,在两个[4铁:4硫]前体融合之前使它们靠得更近,这在具有挑战性的细胞环境中可能至关重要。