首页> 外文期刊>Journal of the American Chemical Society >Electron Transfer Pathways and Protein Response to Charge Separation in Photosynthetic Reaction Centers:Time-Resolved High-Field ENDOR of the Spin-Correlated Radical Pair P_(865)~+Q_A~-
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Electron Transfer Pathways and Protein Response to Charge Separation in Photosynthetic Reaction Centers:Time-Resolved High-Field ENDOR of the Spin-Correlated Radical Pair P_(865)~+Q_A~-

机译:光合作用中心中电子转移途径和蛋白质对电荷分离的响应:自旋相关自由基对P_(865)〜+ Q_A〜-的时间分辨高场ENDOR

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摘要

Recently we reported the first observation of time-resolved (TR) high-frequency (HF) electron nuclear double resonance (ENDOR) of the transient charge separated state P_(865~+Q~-_A in purple photosynthetic bacterial reaction centers (RC) (Poluektov,O.G.,et al.J.Am.Chem.Soc.2004,126,1644-1645).The high resolution and orientational selectivity of HF ENDOR allows us to directly probe protein environments by spectrally selecting specific nuclei in isotopically labeled samples.A new phenomenon associated with the spin correlated radical pair (SCRP) nature of P_(865)~+Q~-A was observed.The TR-HF ENDOR spectra of protein nuclei (protons) surrounding deuterated QA~ exhibit a derivative-like,complicated line shape,which differs considerably from the HF ENDOR spectrum of the protein nuclei surrounding thermally equilibrated Q_A~-.Here,a theoretical analysis of these observations is presented that shows that the positions and amplitudes of ENDOR lines contain information on hyperfine interactions (HFI) of a particular nucleus (a proton of the protein) with both correlated electron spins.Thus,spin density delocalization in the protein environment between the SCRP donor and acceptor molecules can be revealed via HF ENDOR.Novel approaches for acquiring and analyzing SCRP ENDOR that simplify interpretation of the spectra are discussed.Furthermore,we report here that the positions of the ENDOR lines of the SCRP shift with an increase in the time after laser flash,which initiates electron transfer.These shifts provide direct spectroscopic evidence of reorganization of the protein environment to accommodate the donor-acceptor charge-separated state P_(865)~+Q_A~-.
机译:最近,我们报道了紫色光合细菌反应中心(RC)中瞬时电荷分离状态P_(865〜+ Q〜-_A)的时间分辨(TR)高频(HF)电子核双共振(ENDOR)的首次观察(Poluektov,OG,et al.J.Am.Chem.Soc.2004,126,1644-1645).HF ENDOR的高分辨率和定向选择性使我们能够通过光谱选择同位素标记样品中的特定核来直接探测蛋白质环境。观察到与P_(865)〜+ Q〜-A的自旋相关自由基对(SCRP)性质有关的新现象。氘化QA〜周围的蛋白核(质子)的TR-HF ENDOR光谱表现出类似衍生物的结构,复杂的线形,与热平衡Q_A〜-周围蛋白质核的HF ENDOR谱有很大不同。这里,对这些观察结果进行了理论分析,显示ENDOR线的位置和幅度包含有关超精细相互作用的信息特定核(蛋白质的质子)具有两个相关的电子自旋。因此,可以通过HF ENDOR揭示SCRP供体和受体分子之间蛋白质环境中自旋密度的离域化。获取和分析SCRP的新颖方法进一步讨论了简化光谱解释的ENDOR。此外,我们在此报告说,SCRP的ENDOR线的位置随着激光闪光后时间的增加而偏移,从而引发电子转移。这些偏移提供了光谱重组的直接光谱证据。蛋白质环境以适应供体-受体电荷分离状态P_(865)〜+ Q_A〜-。

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  • 来源
    《Journal of the American Chemical Society》 |2005年第11期|p.4049-4059|共11页
  • 作者单位

    Contribution from the Chemistry Division,Argonne National Laboratory,Argonne,Illinois 60439,and Institute of Chemical Physics,RAS,Kosygina 4,Moscow,117977,Russia;

    Contribution from the Chemistry Division,Argonne National Laboratory,Argonne,Illinois 60439,and Institute of Chemical Physics,RAS,Kosygina 4,Moscow,117977,Russia;

    Contribution from the Chemistry Division,Argonne National Laboratory,Argonne,Illinois 60439,and Institute of Chemical Physics,RAS,Kosygina 4,Moscow,117977,Russia;

    Contribution from the Chemistry Division,Argonne National Laboratory,Argonne,Illinois 60439,and Institute of Chemical Physics,RAS,Kosygina 4,Moscow,117977,Russia;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 03:23:49

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