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通过小角X射线散射研究的棕色固氮菌固氮酶钼铁蛋白之间的构象差异

Conformational differences between Azotobacter vinelandii nitrogenase MoFe proteins as studied by small-angle X-ray scattering.

作者信息

Corbett Mary C, Hu Yilin, Fay Aaron W, Tsuruta Hiro, Ribbe Markus W, Hodgson Keith O, Hedman Britt

机构信息

Department of Chemistry, Stanford University, Stanford, California 94305-5080, USA.

出版信息

Biochemistry. 2007 Jul 10;46(27):8066-74. doi: 10.1021/bi7005064. Epub 2007 Jun 14.

Abstract

The nitrogenase MoFe protein is a heterotetramer containing two unique high-nuclearity metalloclusters, FeMoco and the P-cluster. FeMoco is assembled outside the MoFe protein, whereas the P-cluster is assembled directly on the MoFe protein polypeptides. MoFe proteins isolated from different genetic backgrounds have been analyzed using biochemical and spectroscopic techniques in attempting to elucidate the pathway of P-cluster biosynthesis. The DeltanifH MoFe protein is less stable than other MoFe proteins and has been shown by extended X-ray absorption fine structure studies to contain a variant P-cluster that most likely exists as two separate [Fe4S4]-like clusters instead of the subunit-bridging [Fe8S7] cluster found in the wild-type and DeltanifB forms of the MoFe protein [Corbett, M. C., et al. (2004) J. Biol. Chem. 279, 28276-28282]. Here, a combination of small-angle X-ray scattering and Fe chelation studies is used to show that there is a correlation between the state of the P-cluster and the conformation of the MoFe protein. The DeltanifH MoFe protein is found to be larger than the wild-type or DeltanifB MoFe proteins, an increase in size that can be modeled well by an opening of the subunit interface consistent with P-cluster fragmentation and solvent exposure. Importantly, this opening would allow for the insertion of P-cluster precursors into a region of the MoFe protein that is buried in the wild-type conformation. Thus, DeltanifH MoFe protein could represent an early intermediate in MoFe protein biosynthesis where the P-cluster precursors have been inserted, but P-cluster condensation and tetramer stabilization have yet to occur.

摘要

固氮酶钼铁蛋白是一种异源四聚体,包含两个独特的高核金属簇,即铁钼辅因子(FeMoco)和P簇。FeMoco在钼铁蛋白外部组装,而P簇则直接在钼铁蛋白多肽上组装。为了阐明P簇生物合成途径,已使用生化和光谱技术对从不同遗传背景中分离出的钼铁蛋白进行了分析。缺失nifH基因的钼铁蛋白比其他钼铁蛋白更不稳定,扩展X射线吸收精细结构研究表明,它含有一种变体P簇,很可能以两个独立的类[Fe4S4]簇形式存在,而不是在钼铁蛋白的野生型和缺失nifB基因形式中发现的亚基桥连[Fe8S7]簇[科比特,M.C.等人(2004年)《生物化学杂志》279卷,28276 - 28282页]。在此,结合小角X射线散射和铁螯合研究表明,P簇状态与钼铁蛋白构象之间存在相关性。发现缺失nifH基因的钼铁蛋白比野生型或缺失nifB基因的钼铁蛋白更大,这种尺寸增加可以通过亚基界面的打开很好地模拟,这与P簇碎片化和溶剂暴露一致。重要的是,这种打开将允许P簇前体插入到钼铁蛋白中一个在野生型构象中被掩埋的区域。因此,缺失nifH基因的钼铁蛋白可能代表钼铁蛋白生物合成中的一个早期中间体,其中P簇前体已插入,但P簇缩合和四聚体稳定尚未发生。

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