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NifX和NifEN交换NifB辅因子以及VK簇,VK簇是铁钼辅因子生物合成途径中新分离出的中间体。

NifX and NifEN exchange NifB cofactor and the VK-cluster, a newly isolated intermediate of the iron-molybdenum cofactor biosynthetic pathway.

作者信息

Hernandez Jose A, Igarashi Robert Y, Soboh Basem, Curatti Leonardo, Dean Dennis R, Ludden Paul W, Rubio Luis M

机构信息

Department of Plant and Microbial Biology, University of California-Berkeley, Berkeley, CA 94720, USA.

出版信息

Mol Microbiol. 2007 Jan;63(1):177-92. doi: 10.1111/j.1365-2958.2006.05514.x. Epub 2006 Dec 5.

Abstract

The iron-molybdenum cofactor of nitrogenase (FeMo-co) is synthesized in a multistep process catalysed by several Nif proteins and is finally inserted into a pre-synthesized apo-dinitrogenase to generate mature dinitrogenase protein. The NifEN complex serves as scaffold for some steps of this synthesis, while NifX belongs to a family of small proteins that bind either FeMo-co precursors or FeMo-co during cofactor synthesis. In this work, the binding of FeMo-co precursors and their transfer between purified Azotobacter vinelandii NifX and NifEN proteins was studied to shed light on the role of NifX on FeMo-co synthesis. Purified NifX binds NifB cofactor (NifB-co), a precursor to FeMo-co, with high affinity and is able to transfer it to the NifEN complex. In addition, NifEN and NifX exchange another [Fe-S] cluster that serves as a FeMo-co precursor, and we have designated it as the VK-cluster. In contrast to NifB-co, the VK-cluster is electronic paramagnetic resonance (EPR)-active in the reduced and the oxidized states. The NifX/VK-cluster complex is unable to support in vitro FeMo-co synthesis in the absence of NifEN because further processing of the VK-cluster into FeMo-co requires the simultaneous activities of NifEN and NifH. Our in vitro studies suggest that the role of NifX in vivo is to serve as transient reservoir of FeMo-co precursors and thus help control their flux during FeMo-co synthesis.

摘要

固氮酶的铁钼辅因子(FeMo-co)是在由几种固氮蛋白催化的多步过程中合成的,最终被插入到预先合成的脱辅基二氮酶中以生成成熟的二氮酶蛋白。NifEN复合物在该合成的某些步骤中作为支架,而NifX属于在辅因子合成过程中结合FeMo-co前体或FeMo-co的小蛋白家族。在这项工作中,研究了FeMo-co前体的结合及其在纯化的棕色固氮菌NifX和NifEN蛋白之间的转移,以阐明NifX在FeMo-co合成中的作用。纯化的NifX以高亲和力结合FeMo-co的前体NifB辅因子(NifB-co),并能够将其转移到NifEN复合物中。此外,NifEN和NifX交换另一种作为FeMo-co前体的[Fe-S]簇,我们将其命名为VK簇。与NifB-co不同,VK簇在还原态和氧化态下均具有电子顺磁共振(EPR)活性。在没有NifEN的情况下,NifX/VK簇复合物无法支持体外FeMo-co的合成,因为将VK簇进一步加工成FeMo-co需要NifEN和NifH的同时活性。我们的体外研究表明,NifX在体内的作用是作为FeMo-co前体的临时储存库,从而有助于在FeMo-co合成过程中控制它们的通量。

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