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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Photoprotection through ultrafast charge recombination in photochemical reaction centres under oxidizing conditions
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Photoprotection through ultrafast charge recombination in photochemical reaction centres under oxidizing conditions

机译:通过超薄电荷重组在氧化条件下的超快电荷重组光栅

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摘要

Engineering natural photosynthesis to address predicted shortfalls in food and energy supply requires a detailed understanding of its molecular basis and the intrinsic photoprotective mechanisms that operate under fluctuating environmental conditions. Long-lived triplet or singlet excited electronic states have the potential to cause photodamage, particularly in the presence of oxygen, and so a variety of mechanisms exist to prevent formation of such states or safely dissipate their energy. Here, we report a dramatic difference in spectral evolution in fully reduced and partially oxidized Rhodobacter sphaeroides reaction centres (RCs) following excitation of the monomeric bacteriochlorophyll (BChl) cofactors at 805 nm. Three types of preparation were studied, including RCs purified as protein/lipid nanodiscs using the copolymer styrene maleic acid. In fully reduced RCs such excitation produces membrane-spanning charge separation. In preparations of partially oxidized RCs the spectroscopic signature of this charge separation is replaced by that of an energy dissipation process, including in the majority sub-population of reduced RCs. This process, which appears to take place on both cofactor branches, involves formation of a BChl(+)/bacteriopheophytin(-) radical pair that dissipates energy via recombination to a vibrationally hot ground state. The possible physiological role of this dissipative process under mildly oxidizing conditions is considered.
机译:为了解决预期的食物和能源供应短缺问题,工程自然光合作用需要详细了解其分子基础和在波动的环境条件下运行的内在光保护机制。长寿命的三重态或单重态激发电子态有可能造成光损伤,尤其是在有氧的情况下,因此存在各种机制来防止这种态的形成或安全地耗散它们的能量。在这里,我们报告了在805nm激发单体细菌叶绿素(BChl)辅因子后,完全还原和部分氧化的球形红杆菌反应中心(RCs)光谱演化的显著差异。研究了三种类型的制备,包括使用共聚物苯乙烯-马来酸纯化为蛋白质/脂质纳米盘的RCs。在完全降低的RCs中,这种激发产生跨膜电荷分离。在部分氧化RCs的制备过程中,这种电荷分离的光谱特征被能量耗散过程的光谱特征所取代,包括在还原RCs的大多数子种群中。这一过程似乎发生在两个辅因子分支上,涉及BChl(+)/细菌素(-)自由基对的形成,该自由基对通过重组到振动热基态来耗散能量。考虑了轻度氧化条件下这种耗散过程可能的生理作用。

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