首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >[FeFe]-hydrogenase maturation: H-cluster assembly intermediates tracked by electron paramagnetic resonance, infrared, and X-ray absorption spectroscopy
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[FeFe]-hydrogenase maturation: H-cluster assembly intermediates tracked by electron paramagnetic resonance, infrared, and X-ray absorption spectroscopy

机译:[Fefe] - 氢酶成熟:通过电子顺磁共振,红外和X射线吸收光谱跟踪的H簇组装中间体

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[FeFe]-hydrogenase enzymes employ a unique organometallic cofactor for efficient and reversible hydrogen conversion. This so-called H-cluster consists of a [4Fe-4S] cubane cysteine linked to a diiron complex coordinated by carbon monoxide and cyanide ligands and an azadithiolate ligand (adt =NH(CH2S)(2)).[FeFe]-hydrogenase apo-protein binding only the [4Fe-4S] sub-complex can be fully activated in vitro by the addition of a synthetic diiron site precursor complex ([2Fe](adt)). Elucidation of the mechanism of cofactor assembly will aid in the design of improved hydrogen processing synthetic catalysts. We combined electron paramagnetic resonance, Fourier-transform infrared, and X-ray absorption spectroscopy to characterize intermediates of H-cluster assembly as initiated by mixing of the apo-protein (HydA1) from the green alga Chlamydomonas reinhardtii with [2Fe](adt). The three methods consistently show rapid formation of a complete H-cluster in the oxidized, CO-inhibited state (Hox-CO) already within seconds after the mixing. Moreover, FTIR spectroscopy support a model in which Hox-CO formation is preceded by a short-lived Hred'-CO-like intermediate. Accumulation of Hox-CO was followed by CO release resulting in the slower conversion to the catalytically active state (Hox) as well as formation of reduced states of the H-cluster.
机译:[Fefe] - 氢酶酶采用独特的有机金属辅因子,用于高效且可逆的氢转化。该所谓的H族组由连接到由一氧化碳和氰化物配体和四酸甲酸酯配体(Adt = NH(CH 2)(2))配位的二龙复合物连接的[4FE-4S]亚级半胱氨酸组成。[FeFe] - 氢酶Apo-蛋白的结合仅通过加入合成的Dion位点前体复合体([2FE](ADT))可以在体外完全活化[4FE-4S]亚络合物。辅助弧度组件的机理阐明将有助于改进氢气加工合成催化剂的设计。我们组合电子顺磁共振,傅里叶变换红外和X射线吸收光谱,使H簇组件的中间体表征通过与[2FE](ADT)的绿藻衣原体Reinhardtii混合发起的Apo-蛋白(Have1) 。这三种方法一致地显示在混合后几秒钟内的氧化,共抑制状态(Hox-Co)中完全H簇的快速形成。此外,FTIR光谱支持支持霍克斯共同形成的模型。 Hox-Co的积累之后是CO释放,导致催化活性状态(HOX)的较慢转化,以及形成H-Cluster的还原状态。

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