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酸性 pH 值诱导的硅藻叶黄素叶绿素 /-结合蛋白能量转移修饰。

Acidic pH-Induced Modification of Energy Transfer in Diatom Fucoxanthin Chlorophyll /-Binding Proteins.

机构信息

Research Institute for Interdisciplinary Science and Graduate School of Natural Science and Technology, Okayama University, Okayama 700-8530, Japan.

Institute of Low Temperature Science, Hokkaido University, Sapporo 060-0819, Japan.

出版信息

J Phys Chem B. 2020 Jun 18;124(24):4919-4923. doi: 10.1021/acs.jpcb.0c04231. Epub 2020 Jun 4.

Abstract

pH influences excitation-energy-relaxation processes in photosynthetic light-harvesting complexes. Here, we report the excitation-energy dynamics by pH changes in fucoxanthin chlorophyll /-binding proteins (FCPs) isolated from a diatom , probed by time-resolved fluorescence spectroscopy at 77 K. The fluorescence curve measured at pH 5.0 showed a shorter lifetime component than that measured at pH 6.5 and 8.0. The rapid decay component at pH 5.0 is supported by fluorescence decay-associated (FDA) spectra, where strong fluorescence decays relative to fluorescence rises appear in the pH-5.0 FDA spectrum with 70 ps. These results indicate that the diatom FCPs switch their function from light-harvesting to energy-quenching via arrangements of the energy-transfer pathways under acidic pHs. Based on the crystal structure of the diatom FCPs, we propose a model for the energy-quenching machinery through structural changes of the pigment environments, thus providing insights into the pH-dependent light-harvesting strategy in the diatom FCPs.

摘要

pH 会影响光合作用光捕获复合物中的激发能弛豫过程。在这里,我们通过时间分辨荧光光谱法在 77 K 下研究了从硅藻中分离的叶黄素叶绿素/结合蛋白(FCP)在 pH 变化时的激发能动力学。在 pH 5.0 下测量的荧光曲线显示出比在 pH 6.5 和 8.0 下测量的更短的寿命分量。快速衰减分量在 pH 5.0 下得到了荧光衰减相关(FDA)光谱的支持,其中在 pH-5.0 FDA 光谱中,荧光衰减相对于荧光上升出现了强烈的荧光衰减,具有 70 ps。这些结果表明,在酸性 pH 下,硅藻 FCP 通过能量转移途径的排列从光捕获转换为能量猝灭。基于硅藻 FCP 的晶体结构,我们提出了一种通过色素环境的结构变化来实现能量猝灭机制的模型,从而深入了解硅藻 FCP 中依赖 pH 的光捕获策略。

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