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二维脉冲电子顺磁共振解析半醌中间体中氮氢键给体的超精细耦合应变。

Two-Dimensional Pulsed EPR Resolves Hyperfine Coupling Strain in Nitrogen Hydrogen Bond Donors of Semiquinone Intermediates.

机构信息

Department of Chemistry , Massachusetts Institute of Technology , 77 Massachusetts Avenue , Cambridge , Massachusetts 02139 , United States.

出版信息

J Phys Chem B. 2018 May 24;122(20):5205-5211. doi: 10.1021/acs.jpcb.8b02511. Epub 2018 May 10.

Abstract

Hydrogen bonding between semiquinone (SQ) intermediates and side-chain or backbone nitrogens in protein quinone processing sites (Q-sites) is a common motif. Previous studies on SQs from multiple protein environments have reported specific features in the N HYSCORE spectra not reproducible by a theory based on fixed hyperfine parameters, and the source of these lineshape distortions remained unknown. In this work, using the spectra of the SQ in the Q-sites of wild-type and mutant D75H cytochrome bo ubiquinol oxidase from Escherichia coli, we have explained the observed additional features as originating from a-strain of the isotropic hyperfine coupling. In two-dimensional spectra, the a-strain manifests as well-resolved lineshape distortions of the basic cross-ridges and accompanying lines of low intensity in the opposite quadrant that allow its direct analysis. We have shown that their appearance is regulated by the relative values of the strain width, Δ a, and parameter, δ = |2 a + T| - 4ν. α-strain provides a direct measure of the structural dynamics and heterogeneity of the O···H···N bond in the SQ systems.

摘要

半醌(SQ)中间体与蛋白质醌处理位点(Q 位点)侧链或骨架氮之间的氢键是一种常见的模式。先前对来自多种蛋白质环境的 SQ 的研究报告了 N HYSCORE 光谱中具有特定特征的现象,这些特征无法通过基于固定超精细参数的理论重现,而这些线宽扭曲的来源仍然未知。在这项工作中,使用来自大肠杆菌野生型和突变 D75H 细胞色素 bo 泛醌氧化酶 Q 位点的 SQ 的光谱,我们将观察到的附加特征解释为源自各向同性超精细耦合的 a-应变。在二维光谱中,a-应变表现为基本交叉脊的分辨率良好的线宽扭曲,以及伴随的低强度线在相反的象限,允许其直接分析。我们已经表明,它们的出现受到应变宽度Δa和参数δ=|2a+T|-4ν的相对值的调节。α-应变为 SQ 系统中 O···H···N 键的结构动力学和异质性提供了直接的测量。

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