首页> 美国卫生研究院文献>Springer Open Choice >Spectroscopic investigations of a semi-synthetic FeFe hydrogenase with propane di-selenol as bridging ligand in the binuclear subsite: comparison to the wild type and propane di-thiol variants
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Spectroscopic investigations of a semi-synthetic FeFe hydrogenase with propane di-selenol as bridging ligand in the binuclear subsite: comparison to the wild type and propane di-thiol variants

机译:半合成FeFe氢化酶在双核亚位中以丙烷二硒醇为桥联配体的光谱研究:与野生型和丙烷二硫醇变体的比较

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摘要

[FeFe] Hydrogenases catalyze the reversible conversion of H2 into electrons and protons. Their catalytic site, the H-cluster, contains a generic [4Fe–4S]H cluster coupled to a [2Fe]H subsite [Fe2(ADT)(CO)3(CN)2]2−, ADT = µ(SCH2)2NH. Heterologously expressed [FeFe] hydrogenases (apo-hydrogenase) lack the [2Fe]H unit, but this can be incorporated through artificial maturation with a synthetic precursor [Fe2(ADT)(CO)4(CN)2]2−. Maturation with a [2Fe] complex in which the essential ADT amine moiety has been replaced by CH2 (PDT = propane-dithiolate) results in a low activity enzyme with structural and spectroscopic properties similar to those of the native enzyme, but with simplified redox behavior. Here, we study the effect of sulfur-to-selenium (S-to-Se) substitution in the bridging PDT ligand incorporated in the [FeFe] hydrogenase HydA1 from Chlamydomonas reinhardtii using magnetic resonance (EPR, NMR), FTIR and spectroelectrochemistry. The resulting HydA1-PDSe enzyme shows the same redox behavior as the parent HydA1-PDT. In addition, a state is observed in which extraneous CO is bound to the open coordination site of the [2Fe]H unit. This state was previously observed only in the native enzyme HydA1-ADT and not in HydA1-PDT. The spectroscopic features and redox behavior of HydA1-PDSe, resulting from maturation with [Fe2(PDSe)(CO)4(CN)2]2−, are discussed in terms of spin and charge density shifts and provide interesting insight into the electronic structure of the H-cluster. We also studied the effect of S-to-Se substitution in the [4Fe–4S] subcluster. The reduced form of HydA1 containing only the [4Fe–4Se]H cluster shows a characteristic S = 7/2 spin state which converts back into the S = 1/2 spin state upon maturation with a [2Fe]–PDT/ADT complex.Electronic supplementary materialThe online version of this article (10.1007/s00775-018-1558-4) contains supplementary material, which is available to authorized users.
机译:[FeFe]氢化酶催化H2可逆转化为电子和质子。它们的催化位点H簇包含与[2Fe] H子位点[Fe2(ADT)(CO)3(CN)2] 2-耦合的通用[4Fe–4S] H簇。 ,ADT =μ(SCH2)2NH。异源表达的[FeFe]氢酶(脱辅基加氢酶)缺少[2Fe] H单元,但是可以通过人工成熟与合成前体[Fe2(ADT)(CO)4(CN)2] sup 2-掺入。用[2Fe]配合物进行成熟,其中必需的ADT胺部分已被CH2取代(PDT =丙烷-二硫代酸酯),其结构和光谱特性类似于天然酶,但活性较低,但氧化还原行为得到简化。在这里,我们使用磁共振波谱仪(EPR,NMR),傅立叶变换红外光谱(FTIR)和光谱电化学技术研究硫与硒(S-to-Se)取代在掺入了来自衣藻(Chlamydomonas reinhardtii)的[FeFe]氢化酶HydA1中的桥接PDT配体中的作用。所得的HydA1-PDSe酶显示出与亲本HydA1-PDT相同的氧化还原行为。另外,观察到外来CO结合到[2 Fe] H单元的开放配位位点的状态。以前仅在天然酶HydA1-ADT中观察到此状态,而在HydA1-PDT中未观察到。用[Fe2(PDSe)(CO)4(CN) 2 ] 2-的成熟导致HydA1-PDSe的光谱特征和氧化还原行为自旋和电荷密度的变化,并为H团簇的电子结构提供了有趣的见解。我们还研究了[4Fe–4S]子集群中S-to-Se替代的影响。仅包含[4Fe–4Se] H 团簇的HydA1的还原形式显示出特征性的S = 7/2自旋态,并在与[2Fe]成熟后转换回S = 1/2自旋态] –PDT / ADT复合体。电子补充材料本文的在线版本(10.1007 / s00775-018-1558-4)包含补充材料,授权用户可以使用。

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