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首页> 外文期刊>FEBS Letters >Energy transfer within the isolated B875 light‐harvesting pigment‐protein complex of Rhodobacter sphaeroides at 77 K studied by picosecond absorption spectroscopy
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Energy transfer within the isolated B875 light‐harvesting pigment‐protein complex of Rhodobacter sphaeroides at 77 K studied by picosecond absorption spectroscopy

机译:皮秒吸收光谱研究在77 K时球形球形红细菌B875光捕获色素蛋白复合物中的能量转移

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摘要

>The energy transfer dynamics at 77 K within detergent solubilized and purified preparations of the B875 pigment-protein complex of Rhodobacter sphaeroides have been investigated by picosecond absorption spectroscopy. Isotropic absorption recovery and decay of induced absorption anisotropy provide clear evidence that B875 is inhomogeneous in these preparations. We interpret the results as fast (τ = 15 ± 5 ps) energy transfer from the major BChl 875 pigments to a minor pigment pool, B896. The excited state of B896 decays with a time constant of 650 ± 50 ps. We suggest that B896 is intrinsic to B875 complexes and exists in a highly organized state, close to the reaction center. In the intact membrane, B896 may concentrate excitation energy in the vicinity of the reaction center special pair, thereby increasing the efficiency of the final energy transfer step.
机译:>用皮秒吸收光谱法研究了球形杆状红球菌B875色素-蛋白复合物在洗涤剂增溶和纯化制剂中77 K时的能量转移动力学。各向同性吸收恢复和诱导吸收各向异性的衰减提供了清楚的证据,表明B875在这些制剂中是不均匀的。我们将结果解释为从主要BChl 875颜料到次要颜料库B896的快速(τ= 15±5 ps)能量转移。 B896的激发态以650±50 ps的时间常数衰减。我们建议B896是B875配合物所固有的,并且以高度组织化的状态存在,靠近反应中心。在完整的膜中,B896可以将激发能集中在反应中心特殊对附近,从而提高最终能量转移步骤的效率。

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