光合配合物中色素位能的冲突估计:以CP47配合物为例。

Analytical Chemistry Insights Pub Date : 2016-06-02 eCollection Date: 2016-01-01 DOI:10.4137/ACI.S32151
Tonu Reinot, Jinhai Chen, Adam Kell, Mahboobe Jassas, Kevin C Robben, Valter Zazubovich, Ryszard Jankowiak
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引用次数: 12

摘要

我们将重点放在光合复合体(psc)的位能解析问题上[公式:见文本],以便对文献中传播的相互矛盾的估计提出一些真正的关注。作为一个例子,我们提供了一个严格的评估,从菠菜光系统II的CP47天线复合体的光谱中提取的位置能量,尽管许多一般性的评论也适用于其他psc。CP47中叶绿素(Chl) a的正确值对于理解其激子结构、种群动态和激发能途径至关重要。为了证明这一点,我们提出了一个同时拟合多个光谱(吸收、发射、圆二色性和非共振孔烧光谱)的案例研究,表明几组参数可以很好地拟合光谱。重要的是,我们发现文献中报道的非共振孔燃烧光谱中的可变发射最大值(690-695 nm)和样品依赖漂白可以解释,假设许多先前研究的CP47样品是完整和不稳定蛋白质的混合物。似乎不稳定的CP47复合物亚群可能具有Chl29的13(1)-酮基团和pshh蛋白亚基之间的氢键减弱的特征,尽管其他可能性不能完全排除,正如本工作所讨论的那样。简要讨论了我们的研究结果可能产生的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

On the Conflicting Estimations of Pigment Site Energies in Photosynthetic Complexes: A Case Study of the CP47 Complex.

On the Conflicting Estimations of Pigment Site Energies in Photosynthetic Complexes: A Case Study of the CP47 Complex.

On the Conflicting Estimations of Pigment Site Energies in Photosynthetic Complexes: A Case Study of the CP47 Complex.

On the Conflicting Estimations of Pigment Site Energies in Photosynthetic Complexes: A Case Study of the CP47 Complex.

We focus on problems with elucidation of site energies [Formula: see text] for photosynthetic complexes (PSCs) in order to raise some genuine concern regarding the conflicting estimations propagating in the literature. As an example, we provide a stern assessment of the site energies extracted from fits to optical spectra of the widely studied CP47 antenna complex of photosystem II from spinach, though many general comments apply to other PSCs as well. Correct values of [Formula: see text] for chlorophyll (Chl) a in CP47 are essential for understanding its excitonic structure, population dynamics, and excitation energy pathway(s). To demonstrate this, we present a case study where simultaneous fits of multiple spectra (absorption, emission, circular dichroism, and nonresonant hole-burned spectra) show that several sets of parameters can fit the spectra very well. Importantly, we show that variable emission maxima (690-695 nm) and sample-dependent bleaching in nonresonant hole-burning spectra reported in literature could be explained, assuming that many previously studied CP47 samples were a mixture of intact and destabilized proteins. It appears that the destabilized subpopulation of CP47 complexes could feature a weakened hydrogen bond between the 13(1)-keto group of Chl29 and the PsbH protein subunit, though other possibilities cannot be entirely excluded, as discussed in this work. Possible implications of our findings are briefly discussed.

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