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Nonlinear network model analysis of vibrational energy transfer and localisation in the Fenna-Matthews-Olson complex

机译:Fenna-Matthews-Olson复合体中振动能量传递和定位的非线性网络模型分析

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摘要

Collective protein modes are expected to be important for facilitating energy transfer in the Fenna-Matthews-Olson (FMO) complex of photosynthetic green sulphur bacteria, however to date little work has focussed on the microscopic details of these vibrations. The nonlinear network model (NNM) provides a computationally inexpensive approach to studying vibrational modes at the microscopic level in large protein structures, whilst incorporating anharmonicity in the inter-residue interactions which can influence protein dynamics. We apply the NNM to the entire trimeric FMO complex and find evidence for the existence of nonlinear discrete breather modes. These modes tend to transfer energy to the highly connected core pigments, potentially opening up alternative excitation energy transfer routes through their influence on pigment properties. Incorporating localised modes based on these discrete breathers in the optical spectra calculations for FMO using ab initio site energies and excitonic couplings can substantially improve their agreement with experimental results.
机译:预计集体蛋白模式对于促进光合绿色硫细菌的Fenna-Matthews-Olson(FMO)复合物中的能量转移非常重要,但是迄今为止,很少有工作集中在这些振动的微观细节上。非线性网络模型(NNM)提供了一种计算上便宜的方法来研究大型蛋白质结构在微观水平上的振动模式,同时在残基间相互作用中引入了非谐性,从而影响了蛋白质动力学。我们将NNM应用于整个三聚体FMO复合物,并找到存在非线性离散通气模式的证据。这些模式倾向于将能量转移到高度连接的核心颜料上,潜在地通过它们对颜料性能的影响而开辟了替代的激发能转移途径。使用从头算起的位能和激子耦合,将基于这些离散呼吸的局部模式纳入FMO的光谱计算中,可以大大改善它们与实验结果的一致性。

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