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首页> 外文期刊>Journal of physical chemistry letters >pH-Sensing Machinery of Excitation Energy Transfer in Diatom PSI-FCPI Complexes
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pH-Sensing Machinery of Excitation Energy Transfer in Diatom PSI-FCPI Complexes

机译:硅藻PSI-FCPI复合物中的激发能量转移的PH传感机械

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摘要

Excitation energy-transfer processes in photosynthetic light-harvesting complexes are strongly affected by the surrounding environments of pigments. Here we report on the effects of pH changes on excitation energy dynamics in both diatom photosystem I-fucoxanthin chlorophyll a/c-binding protein (PSI-FCPI) and PSI core complexes by means of fluorescence spectroscopies. The steady-state fluorescence spectra of the PSI-FCPI showed similar features among three samples at pH 5.0, 6.5, and 8.0. However, fluorescence decay-associated spectra of the pH 5.0- and 8.0-adapted PSI-FCPI within 100 ps exhibit peak shifts to longer and shorter wavelengths, respectively, than the peaks in the pH 6.5 spectra. Because such spectral changes hardly occur in the PSI complexes, the peak shifts at pH 5.0 and 8.0 in the PSI-FCPI can be ascribed to alterations of pigment pigment and/or pigment protein interactions around/within FCPI caused by the pH changes. These findings provide novel physical insights into the pH-sensing light-harvesting strategy in diatom PSI-FCPI.
机译:光合光收获配合物中的励磁能量转移过程受到颜料周围环境的强烈影响。在这里,我们通过荧光光谱法向硅藻光系统I-Fucoxanthin叶绿素A / C结合蛋白(PSI-FCPI)和PSI核心复合物中的激发能量动力学对激发能量动力学的影响。 PSI-FCPI的稳态荧光光谱在pH 5.0,6.5和8.0的三个样品中显示出类似的特征。然而,在100ps内的pH 5.0-和8.0和8.0-适应的PSI-FCPI的荧光衰减相关的光谱分别在PH 6.5光谱中分别比pH 6.5光谱中的峰移位到更长且更短的波长。因为这种光谱变化在PSI复合物中几乎没有发生,所以PH 5.0和8.0在PSI-FCPI中的峰值偏移可以归因于由pH变化引起的颜料颜料和/或颜料蛋白质相互作用的改变。这些调查结果为硅藻PSI-FCPI的pH感测光策略提供了新的物理见解。

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