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Structural and Preliminary Molecular Dynamics Studies of the Rhodobacter Sphaeroides Reaction Center and Its Mutant Form L(M196)H + H(M202)L

机译:球形球形红细菌反应中心及其突变体L(M196)H + H(M202)L的结构和初步分子动力学研究

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摘要

Pigment-protein interactions are responsible for the high efficiency of the light-energy transfer and conversion in photosynthesis. The reaction center (RC) from the purple bacterium Rhodobacter sphaeroides is the most convenient model for studying the mechanisms of primary processes of photo- synthesis. Site-directed mutagenesis can be used to study the effect of the protein environment of electron-transfer cofactors on the optical properties, stability, pigment composition, and functional activity of RC. The preliminary analysis of RC was performed by computer simulation of the amino acid substitutions L(M196)H + H(M202)L at the pigment-protein interface and by estimating the stability of the three- dimensional structure of the mutant RC by the molecular dynamics method. The doubly mutated reaction center was overexpressed, purified, and crystallized. The three-dimensional structure of this mutant was determined by X-ray crystallography and compared with the molecular dynamics model.
机译:色素-蛋白质相互作用是光合作用中高效率的光能转移和转化的原因。紫色细菌球形红细菌细菌的反应中心(RC)是研究光合成主要过程机理的最便捷模型。定点诱变可用于研究电子转移辅因子的蛋白质环境对RC的光学性质,稳定性,色素成分和功能活性的影响。 RC的初步分析通过计算机模拟色素-蛋白质界面上的氨基酸取代L(M196)H + H(M202)L并通过分子估计突变体RC三维结构的稳定性来进行动力学方法。双突变的反应中心被过表达,纯化和结晶。通过X射线晶体学确定该突变体的三维结构,并与分子动力学模型进行比较。

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