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首页> 外文期刊>Journal of Mathematical Biology >Possible role of interference, protein noise, and sink effects in nonphotochemical quenching in photosynthetic complexes
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Possible role of interference, protein noise, and sink effects in nonphotochemical quenching in photosynthetic complexes

机译:干扰复合物中的非平化淬火中的干扰,蛋白质噪声和下沉效应的可能作用

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We analyze theoretically a simple and consistent quantum mechanical model that reveals the possible role of quantum interference, protein noise, and sink effects in the nonphotochemical quenching (NPQ) in light-harvesting complexes (LHCs). The model consists of a network of five interconnected sites (excitonic states of light-sensitive molecules) responsible for the NPQ mechanism. The model also includes the "damaging" and the dissipative channels. The damaging channel is responsible for production of singlet oxygen and other destructive outcomes. In our model, both damaging and "dissipative" charge transfer channels are described by discrete electron energy levels attached to their sinks, that mimic the continuum part of electron energy spectrum. All five excitonic sites interact with the protein environment that is modeled using a stochastic process. Our approach allowed us to derive the exact and closed system of linear ordinary differential equations for the reduced density matrix and its first momentums. These equations are solved numerically including for strong interactions between the light-sensitive molecules and protein environment. As an example, we apply our model to demonstrate possible contributions of quantum interference, protein noise, and sink effects in the NPQ mechanism in the CP29 minor LHC. The numerical simulations show that using proper combination of quantum interference effects, properties of noise, and sinks, one can significantly suppress the damaging channel. Our findings demonstrate the possible role of interference, protein noise, and sink effects for modeling, engineering, and optimizing the performance of the NPQ processes in both natural and artificial light-harvesting complexes.
机译:我们分析了理论上的简单且一致的量子机械模型,揭示了量子干扰,蛋白质噪声和沉没效应在光收集复合物(LHC)中的非噬菌体猝灭(NPQ)中的可能作用。该模型由负责NPQ机制的五个互连位点(激发性敏感分子的激素状态)组成。该模型还包括“损坏”和耗散通道。破坏渠道负责生产单线氧和其他破坏性结果。在我们的模型中,损坏和“耗散”电荷转移通道都是通过连接到其水槽的离散电子能量水平来描述,这模仿了电子能谱的连续部分。所有五个激子位点与使用随机过程建模的蛋白质环境相互作用。我们的方法使我们能够为降低密度矩阵及其第一势头推导出直线常微分方程的精确和封闭系统。这些方程在数值上求解,包括光敏分子和蛋白质环境之间的强相互作用。作为示例,我们应用我们的模型来证明量子干扰,蛋白质噪声和CP29次要LHC中NPQ机制中的汇率效果的可能贡献。数值模拟表明,使用量子干扰效应的适当组合,噪声的性质和水槽,可以显着抑制损坏的通道。我们的研究结果证明了干扰,蛋白质噪声和沉没效果的可能作用,用于建模,工程和优化天然和人工光收获复合物中的NPQ过程的性能。

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