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首页> 外文期刊>Nature chemical biology >The structure of vanadium nitrogenase reveals an unusual bridging ligand
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The structure of vanadium nitrogenase reveals an unusual bridging ligand

机译:钒含量的结构揭示了一种不寻常的桥接配体

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摘要

Nitrogenases catalyze the reduction of dinitrogen (N-2) gas to ammonium at a complex heterometallic cofactor. This most commonly occurs at the FeMo cofactor (FeMoco), a [Mo-7Fe-9S-C] cluster whose exact reactivity and substrate-binding mode remain unknown. Alternative nitrogenases replace molybdenum with either vanadium or iron and differ in reactivity, most prominently in the ability of vanadium nitrogenase to reduce CO to hydrocarbons. Here we report the 1.35-angstrom structure of vanadium nitrogenase from Azotobacter vinelandii. The 240-kDa protein contains an additional alpha-helical subunit that is not present in molybdenum nitrogenase. The FeV cofactor (FeVco) is a [V-7Fe-8S-C] cluster with a homocitrate ligand to vanadium. Unexpectedly, it lacks one sulfide ion compared to FeMoco, which is replaced by a bridging ligand, likely a mu-1,3-carbonate. The anion fits into a pocket within the protein that is obstructed in molybdenum nitrogenase, and its different chemical character helps to rationalize the altered chemical properties of this unique N-2- and CO-fixing enzyme.
机译:氮酸酶在复杂的杂核辅因子催化二煤(N-2)气中的二硝基(N-2)气体。这通常发生在股骨辅因子(Femoco),一个[Mo-7Fe-9S-C]簇,其精确的反应性和衬底结合模式仍然未知。替代的氮酶用钒或铁替代钼,并在反应性中不同,最突出地在钒酸钒减少与碳氢化合物的能力。在这里,我们从Azotobacter vinelandii报告了1.35埃antrom结构。 240-KDA蛋白含有另外的α-螺旋亚基,其不存在于氢氧化酶中。 FEV Cofactor(Fevco)是一种[V-7FE-8S-C]簇,其与钒的同种酸盐配体。出乎意料地,与雌性相比,它缺乏一个硫化物离子,其被桥接配体代替,可能是mu-1,3-碳酸盐。阴离子拟合蛋白质内的口袋,该蛋白质含氮酶,其不同的化学品有助于合理化该独特的N-2-和共固定酶的改变的化学性质。

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