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Effects of mutual influence of photoinduced electron transitions and slow structural rearrangements in bacterial photosynthetic reaction centers

机译:细菌光合作用反应中心中光诱导电子跃迁和慢速结构重排相互影响的影响

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摘要

We describe the phenomenon of light-induced structural transformations in the reaction centers (RC) of photosynthetic bacteria which makes self-regulation of the RC charge separation efficiency possible. The nature of the effect is that the light-driven electron transfer (ET) between the RC redox-cofactors causes structural changes in the protein-cofactors system and this in turn affects the ET kinetics. If the electron-conformation interaction is strong enough, then such self-regulation gives birth to a new RC conformational state of enhanced charge separation efficiency. We show experimental results of stationary and kinetic absorbance change characteristics under different photoexcitation conditions, indicating structural rearrangements on a rather long (minutes) time scale, mainly within the secondary acceptor binding pocket. To simplify the description, in constructing a theory of structure-function reorganization in the RC we employ the adiabatic approach. Final expressions enable us to make qualitative comparison with experimentally observed kinetics of the fast and slow stages of ‘free’ and ‘structurally controlled’ electron relaxation, respectively.
机译:我们描述了光诱导细菌的反应中心(RC)中的光诱导结构转变的现象,这使RC电荷分离效率的自我调节成为可能。效果的本质是RC氧化还原辅因子之间的光驱动电子转移(ET)导致蛋白质辅因子系统发生结构变化,进而影响ET动力学。如果电子-构象相互作用足够强,则这种自调节将产生增强电荷分离效率的新的RC构象状态。我们显示了在不同的光激发条件下静态和动态吸光度变化特征的实验结果,表明在相当长的时间(分钟)内,主要在次要受体结合口袋中的结构重排。为了简化描述,在RC中构造结构功能重组的理论时,我们采用了绝热方法。最终表达式使我们能够与“自由”和“结构控制”电子弛豫的快慢阶段的实验动力学进行定性比较。

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