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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Photochemically Induced Dynamic Nuclear Polarization Observed by Solid-State NMR in a Uniformly C-13-Isotope-Labeled Photosynthetic Reaction Center
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Photochemically Induced Dynamic Nuclear Polarization Observed by Solid-State NMR in a Uniformly C-13-Isotope-Labeled Photosynthetic Reaction Center

机译:固态NMR在均匀C-13同位素标记的光合反应中心中观察到的光化学诱导的动态核极化

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摘要

A sample of solubilized and quinone-depleted reaction centers from the purple bacterium Rhodobacter (R.) sphaeroides wild type has been prepared entirely C-13 and N-15 isotope labeled at all positions of the protein as well as of the cofactors. In this sample, the occurrence of the solid-state photo-CIDNP (photochemically induced dynamic nuclear polarization) effect has been probed by C-13 solid-state magic-angle spinning NMR under illumination. Under continuous illumination, signal intensities are modified by the three-spin mixing (TSM) mechanism. Time-resolved illumination experiments reveal the occurrence of light-induced nuclear polarization on the time scale of hundreds of microseconds, initially dominated by the transient polarization of the singlet branch of the radical-pair mechanism. A first kinetic analysis shows that the lifetime of the polarization from the singlet branch, indicated by the enhanced absorptive intensities of the signals from aliphatic carbons, is significantly extended. Upon arrival of the polarization from the triplet decay branch, emissive polarization caused by the TSM mechanism is observed. Also, this arrival is significantly delayed. The decay of TSM polarization occurs in two steps, assigned to intra- and intermolecular spin diffusion.
机译:来自紫色细菌球形球形红细菌(Rhodobacter(r。)saferoides)野生型的溶解的和消除了醌的反应中心的样品已完全在蛋白质的所有位置以及辅因子上标记了C-13和N-15同位素。在该样品中,已通过C-13固态魔角旋转NMR在光照下探测了固态光CIDNP(光化学诱导的动态核极化)效应的发生。在连续照明下,信号强度通过三轴混合(TSM)机制进行修改。时间分辨照明实验揭示了在几百微秒的时间尺度上发生的光诱导核极化,最初由自由基对机制的单重态分支的瞬态极化控制。第一次动力学分析表明,单线态分支极化的寿命大大延长了,脂族碳信号的吸收强度提高了。当极化从三重态衰减分支到达时,观察到由TSM机制引起的发射极化。同样,这种到达被大大延迟了。 TSM极化的衰减分两个步骤发生,分别属于分子内和分子间自旋扩散。

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