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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >[NiFe] hydrogenase from Desulfovibrio desulfuricans ATCC 27774: gene sequencing, three-dimensional structure determination and refinement at 1.8 A and modelling studies of its interaction with the tetrahaem cytochrome c_3
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[NiFe] hydrogenase from Desulfovibrio desulfuricans ATCC 27774: gene sequencing, three-dimensional structure determination and refinement at 1.8 A and modelling studies of its interaction with the tetrahaem cytochrome c_3

机译:Desulfovibrio desulfuricans ATCC 27774的[NiFe]氢化酶:基因测序,三维结构确定和1.8 A精制及其与四色细胞色素c_3相互作用的模型研究

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摘要

The primary and three-dimensional structures of a [NiFe] hydrogenase isolated from D. desulfuricans ATCC 27774 were determined, by nucleotide analysis and single-crystal X-ray crystallography. The three-dimensional structural model was refined to R=0.167 and R_(free)=0.223 using data to 1.8 A resolution. Two unique structural features are observed: the [4Fe-4S] cluster nearest the [NiFe] centre has been modified [4Fe-3S-3O] by loss of one sulfur atom and inclusion of three oxygen atoms; a three-fold disorder was observed for Cys536 which binds to the nickel atom in the [NiFe] centre. Also, the bridging sulfur atom that caps the active site was found to have partial occupancy, thus corresponding to a partly activated enzyme. These structural features may have biological relevance. In particular, the two less-populated rotamers of Cys536 may be involved in the activation process of the enzyme, as well as in the catalytic cycle. Molecular modelling studies were carried out on the interaction between this [NiFe] hydrogenase and its physiological partner, the tetrahaem cytochrome c_3 from the same organism. The lowest energy docking solutions were found to correspond to an interaction between the haem IV region in tetrahaem cytochrome c_3 with the distal [4Fe-4S] cluster in [NiFe] hydrogenase. This interaction should correspond to efficient electron transfer and be physiologically relevant, given the proximity of the two redox centres and the fact that electron transfer decay coupling calculations show high coupling values and a short electron transfer pathway. On the other hand, other docking solutions have been found that, despite showing low electron transfer efficiency, may give clues on possible proton transfer mechanisms between the two molecules.
机译:通过核苷酸分析和单晶X射线晶体学确定了从脱硫尿杆菌ATCC 27774分离的[NiFe]氢化酶的一级和三维结构。使用1.8 A分辨率的数据将三维结构模型精炼为R = 0.167和R_(free)= 0.223。观察到两个独特的结构特征:最接近[NiFe]中心的[4Fe-4S]团簇由于失去一个硫原子和包含三个氧原子而被修饰[4Fe-3S-3O];对于结合到[NiFe]中心的镍原子的Cys536,观察到三倍无序。另外,发现覆盖活性位点的桥连硫原子具有部分占有,因此对应于部分活化的酶。这些结构特征可能具有生物学意义。特别地,Cys536的两个人口较少的旋转异构体可能与酶的活化过程以及催化循环有关。对这种[NiFe]氢化酶与其生理伴侣,即来自同一生物的四血红素细胞色素c_3之间的相互作用进行了分子建模研究。发现最低能量对接溶液对应于四血红素细胞色素c_3中的血红素IV区与[NiFe]氢化酶中的远端[4Fe-4S]簇之间的相互作用。考虑到两个氧化还原中心的接近以及电子传递衰减耦合计算显示出较高的耦合值和较短的电子传递路径这一事实,这种相互作用应对应于有效的电子传递并在生理上相关。另一方面,还发现了其他对接溶液,尽管显示出较低的电子转移效率,但仍可能为两个分子之间可能的质子转移机理提供线索。

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