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Optical spectroscopic studies of light-harvesting by pigment-reconstituted peridinin-chlorophyll-proteins at cryogenic temperatures

机译:低温下色素重构的芹菜素-叶绿素蛋白捕集光的光谱研究

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摘要

Low temperature, steady-state, optical spectroscopic methods were used to study the spectral features of peridinin-chlorophyll-protein (PCP) complexes in which recombinant apoprotein has been refolded in the presence of peridinin and either chlorophyll a (Chl a), chlorophyll b (Chl b), chlorophyll d (Chl d), 3-acetyl-chlorophyll a (3-acetyl-Chl a) or bacteriochlorophyll a (BChl a). Absorption spectra taken at 10 K provide better resolution of the spectroscopic bands than seen at room temperature and reveal specific pigment–protein interactions responsible for the positions of the Qy bands of the chlorophylls. The study reveals that the functional groups attached to Ring I of the two protein-bound chlorophylls modulate the Qy and Soret transition energies. Fluorescence excitation spectra were used to compute energy transfer efficiencies of the various complexes at room temperature and these were correlated with previously reported ultrafast, time-resolved optical spectroscopic dynamics data. The results illustrate the robust nature and value of the PCP complex, which maintains a high efficiency of antenna function even in the presence of non-native chlorophyll species, as an effective tool for elucidating the molecular details of photosynthetic light-harvesting.
机译:使用低温,稳态,光学光谱方法研究peridinin-叶绿素-蛋白(PCP)复合物的光谱特征,其中重组脱辅基蛋白在peridinin和叶绿素a(Chl a),叶绿素b存在下已被折叠(Chl b),叶绿素d(Chl d),3-乙酰基-叶绿素a(3-乙酰基-Chl a)或细菌叶绿素a(BChl a)。在10 K下拍摄的吸收光谱比在室温下观察到的光谱带具有更好的分辨率,并且揭示了负责叶绿素Qy带位置的特定色素-蛋白质相互作用。该研究表明,两个蛋白质结合的叶绿素与环I相连的官能团可调节Qy和Soret跃迁能。荧光激发光谱用于计算室温下各种配合物的能量转移效率,这些与先前报道的超快速,时间分辨的光谱动力学数据相关。结果说明了PCP配合物的鲁棒性质和价值,即使在存在非天然叶绿素种类的情况下,PCP配合物仍能保持高效的天线功能,是阐明光合光捕获分子细节的有效工具。

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