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Self-Regulation Phenomena Applied to Bacterial Reaction Centers

机译:自我调节现象应用于细菌反应中心

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摘要

Experimental and theoretical results in support of nonlinear dynamic behavior of photosynthetic reaction centers under light-activated conditions are presented. Different conditions of light adaptation allow for preparation of reaction centers in either of two different conformational states. These states were detected both by short actinic flashes and by the switching of the actinic illumination level between different stationary state values. In the second method, the equilibration kinetics of reaction centers isolated from Rhodobacter sphaeroides were shown to be inherently biphasic. The fast and slow equilibration kinetics are shown to correspond to electron transfer (charge separation) at a fixed structure and to combined electron-conformational transitions governed by the bounded diffusion along the potential surface, respectively. The primary donor recovery kinetics after an actinic flash revealed a pronounced dependence on the time interval (Δt) between cessation of a lengthy preillumination of a sample and the actinic flash. A pronounced slow relaxation component with a decay half time of more than 50 s was measured for Δt > 10 s. This component corresponds to charge recombination in reaction centers for which light-induced structural changes have not relaxed completely before the flash. The amplitude of this component depended on the conditions of the sample preparation, specifically on the type of detergent used in the preparation. The redox potential parameters as well as the structural diffusion constants were estimated for samples prepared in different ways.
机译:提出了在光激活条件下支持光合作用反应中心非线性动力学行为的实验和理论结果。光适应的不同条件允许以两种不同构象态中的任何一种制备反应中心。这些状态既可以通过短时间的光化闪光检测,也可以通过在不同的静止状态值之间切换光化照度来检测。在第二种方法中,从球形红细菌分离出的反应中心的平衡动力学显示为固有的两相性。快速和慢速的平衡动力学分别显示为对应于固定结构的电子转移(电荷分离)和相应的电子构象跃迁,这些跃迁由沿势能表面的有界扩散控制。光化闪光后的主要供体恢复动力学显示出明显依赖于样品停止长时间的预照明与光化闪光之间的时间间隔(Δt)。在Δt> 10 s时,测得衰落半衰期超过50 s的明显的慢弛豫分量。该组分对应于反应中心的电荷复合,对于这些反应中心,在闪光之前光诱导的结构变化尚未完全放松。该成分的振幅取决于样品制备的条件,特别是取决于制备中使用的洗涤剂的类型。对于以不同方式制备的样品,估计了氧化还原电势参数以及结构扩散常数。

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