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谷氨酸棒杆菌固氮酶中酪氨酸配位的 P 簇:O 基配体在构象门控电子转移中重要性的证据。

Tyrosine-Coordinated P-Cluster in G. diazotrophicus Nitrogenase: Evidence for the Importance of O-Based Ligands in Conformationally Gated Electron Transfer.

机构信息

Department of Chemistry and Biochemistry, University of California, San Diego , 9500 Gilman Drive, La Jolla, California 92093-0356, United States.

Department of Chemistry, University of California , Irvine, 1102 Natural Science II, Irvine, California 92697, United States.

出版信息

J Am Chem Soc. 2016 Aug 17;138(32):10124-7. doi: 10.1021/jacs.6b06783. Epub 2016 Aug 8.

Abstract

The P-cluster is a unique iron-sulfur center that likely functions as a dynamic electron (e(-)) relay site between the Fe-protein and the catalytic FeMo-cofactor in nitrogenase. The P-cluster has been shown to undergo large conformational changes upon 2-e(-) oxidation which entail the coordination of two of the Fe centers to a Ser side chain and a backbone amide N, respectively. Yet, how and if this 2-e(-) oxidized state (P(OX)) is involved in catalysis by nitrogenase is not well established. Here, we present the crystal structures of reduced and oxidized MoFe-protein (MoFeP) from Gluconacetobacter diazotrophicus (Gd), which natively possesses an Ala residue in the position of the Ser ligand to the P-cluster. While reduced Gd-MoFeP is structurally identical to previously characterized counterparts around the FeMo-cofactor, oxidized Gd-MoFeP features an unusual Tyr coordination to its P-cluster along with ligation by a backbone amide nitrogen. EPR analysis of the oxidized Gd-MoFeP P-cluster confirmed that it is a 2-e(-) oxidized, integer-spin species. Importantly, we have found that the sequence positions corresponding to the Ser and Tyr ligands are almost completely covariant among Group I nitrogenases. These findings strongly support the possibility that the P(OX) state is functionally relevant in nitrogenase catalysis and that a hard, O-based anionic ligand serves to stabilize this state in a switchable fashion.

摘要

P 簇是一个独特的铁硫中心,可能作为固氮酶中铁蛋白和催化 FeMo 辅因子之间的动态电子(e(-))传递位点。已经表明,P 簇在经历 2e(-)氧化时会发生大的构象变化,其中两个 Fe 中心分别与 Ser 侧链和骨架酰胺 N 配位。然而,这种 2e(-)氧化态(P(OX))是否以及如何参与固氮酶的催化作用尚不清楚。在这里,我们展示了来自 Gluconacetobacter diazotrophicus(Gd)的还原和氧化 MoFe 蛋白(MoFeP)的晶体结构,Gd 中的 Ser 配体位置天然存在 Ala 残基。虽然还原的 Gd-MoFeP 在结构上与 FeMo 辅因子周围以前表征的对应物相同,但氧化的 Gd-MoFeP 具有不寻常的 Tyr 配位到其 P 簇,以及与骨架酰胺氮的配位。氧化的 Gd-MoFeP P 簇的 EPR 分析证实它是一个 2e(-)氧化的整数自旋物种。重要的是,我们发现对应于 Ser 和 Tyr 配体的序列位置在 I 组固氮酶中几乎完全相关。这些发现强烈支持 P(OX) 态在固氮酶催化中具有功能相关性的可能性,并且硬的基于 O 的阴离子配体以可切换的方式稳定这种态。

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