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Modeling the Signatures of Hydrides in Metalloenzymes: ENDOR Analysis of a Di-iron Fe(μ-NH)(μ-H)Fe Core

机译:模拟金属酶中氢化物的特征:双铁Fe(μ-NH)(μ-H)Fe核的ENDOR分析

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摘要

The application of 35 GHz pulsed EPR and ENDOR spectro-scopies has established that the biomimetic model complex L_3Fe(μ-NH)-(μ-H)FeL_3 (L_3 = [PhB(CH_2PPh_2)_3]~-) complex, 3, is a novel S = l/2 type-Ⅲ mixed-valence di-iron Ⅱ/Ⅲ species, in which the unpaired electron is shared equally between the two iron centers. ~(1,2)H and ~(14,15)N ENDOR measurements of the bridging imide are consistent with an allyl radical molecular orbital model for the two bridging ligands. Both the (β-H) and the proton of the (μ-NH) of the crystallographically characterized 3 show the proposed signature of a 'bridging' hydride that is essentially equidistant between two 'anchor' metal ions: a rhombic dipolar interaction tensor, T ≈ [T, -T, 0]. The point-dipole model for describing the anisotropic interaction of a bridging H as the sum of the point-dipole couplings to the 'anchor' metal ions reproduces this signature with high accuracy, as well as the axial tensor of a terminal hydride, T ≈ [-T, - T, 2T], thus validating both the model and the signatures. This validation in turn lends strong support to the assignment, based on such a point-dipole analysis, that the molybdenum-iron cofactor of nitrogenase contains two [Fe-H~--Fe] bridging-hydride fragments in the catalytic intermediate that has accumulated four reducing equivalents (E_4). Analysis further reveals a complementary similarity between the isotropic hyperfine couplings for the bridging hydrides in 3 and E_4. This study provides a foundation for spectroscopic study of hydrides in a variety of reducing metalloenzymes in addition to nitrogenase.
机译:35 GHz脉冲EPR和ENDOR光谱仪的应用已确定仿生模型复合物L_3Fe(μ-NH)-(μ-H)FeL_3(L_3 = [PhB(CH_2PPh_2)_3]〜-)的复合物3为一个新的S = l / 2型Ⅲ型混合价二价铁(Ⅱ/Ⅲ),其中未配对电子在两个铁中心之间平均共享。桥接酰亚胺的〜(1,2)H和〜(14,15)N ENDOR测量结果与两个桥接配体的烯丙基自由基分子轨道模型一致。晶体学特征3的(β-H)和(μ-NH)的质子均显示出建议的``桥联''氢化物特征,其在两个``锚定''金属离子之间基本等距:菱形偶极相互作用张量, T≈[T,-T,0]。用于描述桥接H的各向异性相互作用的点-偶极子模型以点-偶极子耦合到“锚定”金属离子的总和来再现该特征,以及末端氢化物的轴向张量T [-T,-T,2T],从而同时验证模型和签名。反过来,这种验证又得到了强有力的支持,这是基于点偶极分析的,即固氮酶的钼铁辅因子在催化中间体中已经积累了两个[Fe-H〜-Fe]桥联氢化物片段四个还原当量(E_4)。分析进一步揭示了3和E_4中桥联氢化物的各向同性超精细偶合之间的互补相似性。该研究为光谱研究中除氮酶外的多种还原金属酶中的氢化物提供了基础。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第30期|p.12637-12647|共11页
  • 作者单位

    Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, United States;

    Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, United States;

    Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, United States;

    Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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