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Heme structure and orientation in single monolayers of cytochrome c on polar and nonpolar soft surfaces.

机译:极性和非极性软表面上细胞色素c单层的血红素结构和方向。

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摘要

Polarized x-ray absorption fine structure (XAFS) spectroscopy has been performed in fluorescence mode under total external reflection conditions on frozen hydrated single monolayers of yeast cytochrome c (YCC). The protein molecules were vectorially oriented within the monolayer by tethering their naturally occurring and unique surface cysteine residues to the sulfhydryl-endgroups at the surface of a mixed organic self-assembled monolayer, itself covalently attached to an ultrapure silicon wafer. The sulfhydryl-endgroups were isolated by dilution with either methyl- or hydroxyl-endgroups, producing macroscopically nonpolar or uncharged-polar soft surfaces, respectively. Independent information on the heme-plane orientation relative to the monolayer plane was obtained experimentally via optical linear dichroism. The polarized XAFS data have been analyzed both qualitatively and by a global mapping approach limited to systematically altering the various iron-ligand distances within a model for the local atomic environment of the heme prosthetic group, and comparing the theoretically generated XAFS spectra with those obtained experimentally. A similar analysis of unpolarized XAFS data from a frozen solution of YCC was performed using either the heme environment from the NMR solution or the x-ray crystallographic data for YCC as the model structure. All resulting iron-ligand distances were then used in molecular dynamics (MD) computer simulations of YCC in these three systems to investigate the possible effects of anisotropic ligand motions on the fits of the calculated to the experimental XAFS spectra.
机译:偏振X射线吸收精细结构(XAFS)光谱已在全细胞外反射条件下,在酵母细胞色素c(YCC)的冷冻水合单层上以荧光模式进行。通过将其天然存在且独特的表面半胱氨酸残基束缚在混合有机自组装单层表面的巯基端基上,蛋白质分子在单层内进行矢量定向,该有机单层自身共价连接至超纯硅晶片。通过用甲基或羟基端基稀释来分离巯基端基,从而分别产生宏观上非极性或不带电荷的柔软表面。通过光学线性二向色性实验获得关于血红素平面相对于单层平面取向的独立信息。已对极化XAFS数据进行了定性和全局映射方法的分析,该方法仅限于系统更改血红素修复体局部原子环境模型中的各种铁配体距离,并将理论生成的XAFS光谱与通过实验获得的光谱进行比较。使用来自NMR溶液的血红素环境或YCC的X射线晶体学数据作为模型结构,对来自YCC冷冻溶液的非极化XAFS数据进行了类似的分析。然后将所有得到的铁配体距离用于这三个系统中YCC的分子动力学(MD)计算机模拟中,以研究各向异性配体运动对计算得出的XAFS光谱拟合的可能影响。

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