首页> 外文期刊>Journal of Molecular Biology >The effect of intracellular molybdenum in Hydrogenophaga pseudoflava on the crystallographic structure of the seleno-molybdo-iron-sulfur flavoenzyme carbon monoxide dehydrogenase.
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The effect of intracellular molybdenum in Hydrogenophaga pseudoflava on the crystallographic structure of the seleno-molybdo-iron-sulfur flavoenzyme carbon monoxide dehydrogenase.

机译:Hydrogenophaga pseudoflava中的细胞内钼对硒钼铁铁黄酮酶一氧化碳脱氢酶晶体结构的影响。

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摘要

Crystal structures of carbon monoxide dehydrogenase (CODH), a seleno-molybdo-iron-sulfur flavoprotein from the aerobic carbon monoxide utilizing carboxidotrophic eubacterium Hydrogenophaga pseudoflava, have been determined from the enzyme synthesized at high (Mo(plus) CODH) and low intracellular molybdenum content (Mo(minus) CODH) at 2.25 A and 2.35 A resolution, respectively. The structures were solved by Patterson search methods utilizing the enzyme from Oligotropha carboxidovorans as the initial model. The CODHs from both sources are structurally very much conserved and show the same overall fold, architecture and arrangements of the molybdopterin-cytosine dinucleotide-type of molybdenum cofactor, the type I and type II [2Fe-2S] clusters and the flavin-adenine dinucleotide. Unlike the CODH from O. carboxidovorans, the enzyme from H. pseudoflava reveals a unique post-translationally modified C(gamma)-hydroxy-Arg384 residue which precedes the catalytically essential S-selanyl-Cys385 in the active-site loop. In addition, the Trp193 which shields the isoalloxazine ring of the flavin-adenine dinucleotide in the M subunit of the H. pseudoflava CODH is a Tyr193 in the O. carboxidovorans CODH. The hydrogen bonding interaction pattern of the molybdenum cofactor involves 27 hydrogen bonds with the surrounding protein. Of these, eight are with the cytosine moiety, eight with the pyrophosphate, six with the pyranopterin, and five with the ligands of the Mo ion. The structure of the catalytically inactive Mo(minus) CODH indicates that an intracellular Mo-deficiency affects exclusively the active site of the enzyme as an incomplete non-functional molybdenum cofactor was synthesized. The 5'-CDP residue was present in Mo(minus) CODH, whereas the Mo-pyranopterin moiety was absent. In Mo(plus) CODH the selenium faces the Mo ion and flips away from the Mo site in Mo(minus) CODH. The different side-chain conformations of the active-site residues S-selanyl-Cys385 and Glu757 in Mo(plus) and Mo(minus) CODH indicate a side-chain flexibility and a function of the Mo ion in the proper orientation of both residues. Copyright 2000 Academic Press.
机译:一氧化碳脱氢酶(CODH)的晶体结构,是由碳氧营养型真细菌Hydrogenophaga pseudoflava从需氧一氧化碳中选出的一种硒-钼-铁-硫黄素,已从高(Mo(plus)CODH)和低细胞内钼合成的酶中确定含量(Mo(负)CODH)分别为2.25 A和2.35 A分辨率。通过Patterson搜索方法,利用来自寡糖碳氧化酶的酶作为初始模型,解析了结构。两种来源的CODH在结构上都非常保守,并且显示出钼辅因子的钼蝶呤-胞嘧啶二核苷酸型,I型和II型[2Fe-2S]簇以及黄素-腺嘌呤二核苷酸的相同折叠,结构和排列。与O.carboxidovorans的CODH不同,H。pseudoflava的酶揭示了一个独特的翻译后修饰的C(γ)-羟基-Arg384残基,该残基在活性位点环中的催化必不可少的S-selanyl-Cys385之前。另外,在假单胞菌CODH的M亚基中,保护黄素-腺嘌呤二核苷酸的异恶嗪环的Trp193是O.carboxidovorans CODH中的Tyr193。钼辅因子的氢键相互作用模式涉及与周围蛋白质的27个氢键。其中,八个具有胞嘧啶部分,八个具有焦磷酸盐,六个具有吡喃蝶呤,五个具有Mo离子的配体。催化失活的Mo(负)CODH的结构表明,由于合成了不完整的非功能性钼辅助因子,细胞内Mo缺乏症仅影响酶的活性位点。 Mo(减去)CODH中存在5'-CDP残基,而Mo-吡喃蝶呤部分不存在。在Mo(plus)CODH中,硒面对Mo离子,并从Mo(min)CODH中的Mo位置反转。 Mo(plus)和Mo(minus)CODH中活性部位残基S-selanyl-Cys385和Glu757的不同侧链构象表明侧链柔性和Mo离子在两个残基的正确方向上的功能。版权所有2000学术出版社。

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