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Magnetic-field-induced orientation of photosynthetic reaction centers as revealed by time-resolved W-band EPR of spin-correlated radical pairs: Development of a molecular model

机译:自旋相关自由基对的时间分辨W波段EPR揭示了光合作用中心的磁场诱导取向:分子模型的建立

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Spin-correlated radical pairs are the short-lived intermediates of the primary energy conversion steps of photosynthesis. In this paper, we develop a comprehensive model for the spin-polarized electron paramagnetic resonance (EPR) spectra of these systems. Particular emphasis is given to a proper treatment of the alignment of the photosynthetic bacteria by the field of the EPR spectrometer. The model is employed to analyze time-resolved W-band (94 GHz) EPR spectra of the secondary radical pair P(700)(+)A(1)(-) in photosystern I formed by photoexcitation of the deuterated and N-15- substituted cyanobacterium Synechococcus lividus. Computer simulations of the angular-dependent EPR spectra of P(700)(+)A(1)(-) provide values for the order parameter of the cyanobacterial cells and for the orientation of the membrane normal in a molecular reference system. The order parameter from EPR compares favorably with corresponding data from electron microscopy obtained for the S. lividus cells under similar experimental conditions. It is shown that high-field EPR of a magnetically aligned sample in combination with the study of quantum beat oscillations represents a powerful structural tool for the short-lived radical pair intermediates of photosynthesis.
机译:自旋相关的自由基对是光合作用初级能量转化步骤的短暂中间体。在本文中,我们为这些系统的自旋极化电子顺磁共振(EPR)光谱开发了一个综合模型。特别强调通过EPR光谱仪领域对光合细菌的排列进行适当处理。该模型用于分析通过氘化和N-15的光激发形成的光系统I中次要自由基对P(700)(+)A(1)(-)的时间分辨W波段(94 GHz)EPR光谱-取代的蓝细菌synechococcus lividus。 P(700)(+)A(1)(-)随角度变化的EPR光谱的计算机模拟提供了蓝细菌细胞的有序参数值和分子参照系统中膜法线方向的值。在相似的实验条件下,EPR的有序参数与从电子显微镜获得的针对紫葡萄链球菌细胞的相应数据相比具有优势。结果表明,磁取向样品的高场EPR结合量子拍频振荡的研究代表了光合作用的短寿命自由基对中间体的强大结构工具。

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