首页> 外文期刊>Journal of physical chemistry letters >Asymmetry in the Ligand Coordination Sphere of the [FeFe] Hydrogenase Active Site Is Reflected in the Magnetic Spin Interactions of the Aza-propanedithiolate Ligand
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Asymmetry in the Ligand Coordination Sphere of the [FeFe] Hydrogenase Active Site Is Reflected in the Magnetic Spin Interactions of the Aza-propanedithiolate Ligand

机译:[FeFE]氢酶活性位点的配体配位球体中的不对称反映在AZA-丙二硫酸酯配体的磁性旋转相互作用中

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摘要

[FeFe] hydrogenases are very active enzymes that catalyze the reversible conversion of molecular hydrogen into protons and electrons. Their active site, the H-cluster, contains a unique binuclear iron complex, [2Fe](H), with CN- and CO ligands as well as an aza-propane-dithiolate (ADT) moiety featuring a central amine functionality that mediates proton transfer during catalysis. We present a pulsed C-13-ENDOR investigation of the H-cluster in which the two methylene carbons of ADT are isotope labeled with C-13. We observed that the corresponding two C-13 hyperfine interactions are of opposite sign and corroborated this finding using density functional theory calculations. The spin polarization in the ADT ligand is shown to be linked to the asymmetric coordination of the distal iron site with its terminal CN- and CO ligands. We propose that this asymmetry is relevant for the enzyme reactivity and is related to the (optimal) stabilization of the iron-hydride intermediate in the catalytic cycle.
机译:氢酶是非常活性的酶,其催化分子氢转化为质子和电子的可逆转化。它们的活性位点,H族含有独特的双核铁络合物,[2FE](H),具有CN-和CO配体以及具有介导质子的中央胺官能团的AZA-丙烷 - 二硫酸盐(ADT)部分在催化期间转移。我们介绍了对H-簇的脉冲C-13-NoInor研究,其中ADT的两种亚甲基碳是用C-13标记的同位素。我们观察到,相应的两个C-13高血液相互作用是相反的标志,并使用密度泛函理论计算得到证实该发现。 ADT配体中的旋转偏振显示与远端铁部位的不对称配位与其末端CN-和CO配体连接。我们提出,这种不对称性与酶反应性相关,并且与催化循环中的铁 - 氢化物中间体的(最佳)稳定相关。

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