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Impact of the Intensity Threshold on Binary Switching Analysis in Single Molecule Spectroscopy of Phycobilisomes

机译:强度阈值对Phycobilisomes单分子光谱中二元切换分析的影响

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The functional dynamics of photosynthetic light-harvesting pigment-protein complexes play an essential physiological role. The dynamic switching between different states - associated with different spectroscopic signatures -allows these complexes to regulate the excitation energy flow in the photosynthetic apparatus as a direct response to changing environmental conditions. To a large extent, the robustness of the photosynthetic processes depends on this functional flexibility of the light-harvesting complexes. Single molecule spectroscopy (SMS) is a method of choice to investigate the spectroscopic properties of individual molecules or complexes and allows the direct observation of switches between emissive states. The fluorescence intensity dynamics of individual light-harvesting complexes are commonly analyzed using a two-state model, corresponding to an ON and OFF state, respectively. In this model, each switch across the intensity threshold that separates the two states is counted as an intensity switch. However, multichromophoric systems in general, and protein complexes binding multiple pigments in particular, are known to switch among various intensity levels, suggesting that the choice of the intensity threshold may significantly influence the two-state statistics. Here, we investigated the fluorescence data of a very large complex - the main light harvesting complex of cyanobacteria, the phycobilisome - and determined that the intensity threshold has only a limited impact on the binary switching analysis of the complex for an extended range of threshold positions.
机译:光合光收获颜料蛋白复合物的功能性动态起到了基本的生理作用。不同状态之间的动态切换 - 与不同的光谱签名相关联 - 所有复合物都可以调节光合仪中的激发能量流为对变化环境条件的直接响应。在很大程度上,光合作用过程的稳健性取决于光收获配合物的这种功能灵活性。单分子光谱(SMS)是一种选择的方法,用于研究单个分子或复合物的光谱性能,并允许直接观察发光状态之间的开关。通常使用双状态模型分析单个光收集复合物的荧光强度动态,分别对应于开启和关闭状态。在该模型中,将两个状态分开的强度阈值的每个开关被计为强度开关。然而,尤其是多粒体系,以及蛋白质复合物特别是结合多种颜料的蛋白质复合物在各种强度水平之间切换,表明强度阈值的选择可以显着影响两个状态统计。在这里,我们研究了一个非常大的复合物的荧光数据 - 植物细菌的主要光学络合物,植物血管机构 - 并确定强度阈值对复合物的二进制切换分析具有有限的影响,用于延伸范围的阈值位置。

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