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The metalloclusters of carbon monoxide dehydrogenase/acetyl-CoA synthase: a story in pictures

机译:一氧化碳脱氢酶/乙酰辅酶A合酶的金属簇合物:图片中的故事

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摘要

Eight Ni proteins are known and three of these, CO dehydrogenase (CODH), acetyl-CoA synthase (ACS), and hydrogenase, are Ni-Fe-S proteins. In the last three years, the long-awaited structures of CODH and ACS have been solved. The bioinorganic community was shocked, as the structures of the active sites of CODH and ACS, the C- and A-cluster, respectively, which each had been predicted to consist of a [Fe_4S_4] cluster bridged to a single Ni, revealed unexpected compositions and arrangements. Crystal structures of ACS revealed major differences in protein conformation and in A-cluster composition; for example, a [Fe_4S_4] cluster bridged to a binuclear center in which one of the metal binding sites was occupied by Ni, Cu, or Zn. Recent studies have revealed Ni-Ni to be the active state, unveiled the source of the heterogeneity that had plagued studies of CODH/ACS for decades, and produced a metal-replacement strategy to generate highly active and nearly homogeneous enzyme.
机译:已知8种Ni蛋白,其中3种,CO脱氢酶(CODH),乙酰-CoA合酶(ACS)和氢化酶是Ni-Fe-S蛋白。在最近三年中,解决了人们期待已久的CODH和ACS结构。生物无机界感到震惊,因为CODH和ACS活性位点的结构分别为C和A簇,每个簇据预测均由桥接至单个Ni的[Fe_4S_4]簇组成,揭示了意外的组成和安排。 ACS的晶体结构揭示了蛋白质构象和A簇组成的主要差异。例如,[Fe_4S_4]簇桥接到双核中心,其中金属结合位点之一被Ni,Cu或Zn占据。最近的研究表明,Ni-Ni处于活性状态,揭示了困扰CODH / ACS数十年的异质性来源,并提出了一种金属置换策略以产生高活性和近乎均匀的酶。

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