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首页> 外文期刊>Journal of Molecular Biology >The three-dimensional structure of (NiFeSe) hydrogenase from Desulfovibrio vulgaris Hildenborough: a hydrogenase without a bridging ligand in the active site in its oxidised, 'as-isolated' state.
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The three-dimensional structure of (NiFeSe) hydrogenase from Desulfovibrio vulgaris Hildenborough: a hydrogenase without a bridging ligand in the active site in its oxidised, 'as-isolated' state.

机译:寻常脱硫弧菌希尔登伯勒的(NiFeSe)氢化酶的三维结构:在活性位点处于氧化状态的“分离”状态下没有桥接配体的氢化酶。

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摘要

Hydrogen is a good energy vector, and its production from renewable sources is a requirement for its widespread use. [NiFeSe] hydrogenases (Hases) are attractive candidates for the biological production of hydrogen because they are capable of high production rates even in the presence of moderate amounts of O(2), lessening the requirements for anaerobic conditions. The three-dimensional structure of the [NiFeSe] Hase from Desulfovibrio vulgaris Hildenborough has been determined in its oxidised "as-isolated" form at 2.04-A resolution. Remarkably, this is the first structure of an oxidised Hase of the [NiFe] family that does not contain an oxide bridging ligand at the active site. Instead, an extra sulfur atom is observed binding Ni and Se, leading to a SeCys conformation that shields the NiFe site from contact with oxygen. This structure provides several insights that may explain the fast activation and O(2) tolerance of these enzymes.
机译:氢是一种良好的能源载体,从可再生资源生产氢是其广泛使用的要求。 [NiFeSe]氢化酶(Hases)是生物生产氢的诱人候选物,因为即使在适量的O(2)存在下,它们也能实现高生产率,从而降低了厌氧条件的要求。寻常脱硫弧菌Hildenborough的[NiFeSe] Hase的三维结构已经以其氧化的“分离态”形式在2.04-A分辨率下测定。值得注意的是,这是[NiFe]家族氧化Hase的第一个结构,该结构在活性位点不包含氧化物桥联配体。取而代之的是,观察到一个额外的硫原子与Ni和Se结合,从而形成SeCys构象,从而屏蔽了NiFe部位,使其不与氧气接触。这种结构提供了一些见解,可以解释这些酶的快速激活和O(2)耐受性。

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