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NifEN-B complex of Azotobacter vinelandii is fully functional in nitrogenase FeMo cofactor assembly

机译:葡萄固氮菌的NifEN-B复合物在固氮酶FeMo辅因子装配中完全起作用

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摘要

Assembly of nitrogenase FeMoco is one of the key processes in bioinorganic chemistry. NifB and NifEN are two essential elements immediately adjacent to each other along the biosynthetic pathway of FeMoco. Previously, an 8Fe-precursor of FeMoco was identified on NifEN; however, the identity of the biosynthetic intermediate on NifB has remained elusive to date. Here, we present a combined biochemical and spectroscopic investigation of a His-tagged NifEN-B fusion protein of Azotobacter vinelandii. Our data from the EPR and activity analyses confirm the presence of the 8Fe-precursor in the NifEN entity of NifEN-B; whereas those from the metal, EPR, and UV/Vis experiments reveal the presence of additional [Fe4S4]-type cluster species in the NifB entity of NifEN-B. EPR-, UV/Vis- and metal-based quantitative analyses suggest that the newly identified cluster species in NifEN-B consist of both SAM-motif (CXXXCXXC)- and non-SAM-motif-bound [Fe4S4]-type clusters. Moreover, EPR and activity experiments indicate that the non-SAM-motif [Fe4S4] cluster is a NifB-bound intermediate of FeMoco assembly, which could be converted to the 8Fe-precursor in a SAM-dependent mechanism. Combined outcome of this work provides the initial insights into the biosynthetic events of FeMoco on NifB. More importantly, the full capacity of NifEN-B in FeMoco biosynthesis demonstrates the potential of this fusion protein as an excellent platform for further investigations of the role of NifB and its interaction with NifEN during the process of FeMoco assembly.
机译:固氮酶FeMoco的组装是生物无机化学中的关键过程之一。 NifB和NifEN是沿着FeMoco的生物合成途径彼此紧邻的两个基本元素。以前,在NifEN上确定了FeMoco的8Fe前体;然而,迄今为止,NifB上生物合成中间体的身份仍然难以捉摸。在这里,我们提出了一个组合的生化和光谱学研究的带标签的NazEN vinelandii NifEN-B融合蛋白。我们从EPR和活性分析得到的数据证实了NifEN-B的NifEN实体中存在8Fe前体。而来自金属,EPR和UV / Vis实验的数据揭示了NifEN-B的NifB实体中存在其他[Fe4S4]型簇物种。基于EPR,UV / Vis和金属的定量分析表明,在NifEN-B中新发现的簇物种包括SAM基序(CXXXCXXC)和非SAM基序结合的[Fe4S4]型簇。此外,EPR和活性实验表明,非SAM-基序[Fe4S4]簇是FeMoco组装体的NifB结合中间体,可以通过SAM依赖机制转化为8Fe前体。这项工作的综合结果为FeMoco在NifB上的生物合成事件提供了初步见识。更重要的是,NifEN-B在FeMoco生物合成中的全部能力证明了该融合蛋白作为进一步研究NifB的作用及其在FeMoco组装过程中与NifEN相互作用的极好的平台的潜力。

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