Jassas Mahboobe, Reinot Tonu, Kell Adam, Jankowiak Ryszard
Department of Chemistry and ‡Department of Physics, Kansas State University , Manhattan, Kansas 66506, United States.
J Phys Chem B. 2017 May 4;121(17):4364-4378. doi: 10.1021/acs.jpcb.7b00362. Epub 2017 Apr 19.
Identification of the lowest energy pigments in the photosynthetic CP47 antenna protein complex of Photosystem II (PSII) is essential for understanding its excitonic structure, as well as excitation energy pathways in the PSII core complex. Unfortunately, there is no consensus concerning the nature of the low-energy state(s), nor chlorophyll (Chl) site energies in this important photosynthetic antenna. Although we raised concerns regarding the estimations of Chl site energies obtained from modeling studies of various types of CP47 optical spectra [Reinot, T; et al., Anal. Chem. Insights 2016, 11, 35-48] recent new assignments imposed by the shape of the circularly polarized luminescence (CPL) spectrum [Hall, J.; et al., Biochim. Biophys. Acta 2016, 1857, 1580-1593] necessitate our comments. We demonstrate that other combinations of low-energy Chls provide equally good or improved simultaneous fits of various optical spectra (absorption, emission, CPL, circular dichroism, and nonresonant hole-burned spectra), but more importantly, we expose the heterogeneous nature of the recently studied complexes and argue that the published composite nature of the CPL (contributed to by CPL, CPL, and CPL) does not represent an intact CP47 protein. A positive CPL is extracted for the intact protein, which, when simultaneously fitted with multiple other optical spectra, provides new information on the excitonic structure of intact and destabilized CP47 complexes and their lowest energy state(s).
确定光系统II(PSII)光合CP47天线蛋白复合物中能量最低的色素对于理解其激子结构以及PSII核心复合物中的激发能途径至关重要。不幸的是,对于这种重要光合天线中低能态的性质以及叶绿素(Chl)位点能量,尚无共识。尽管我们对从各种类型的CP47光谱建模研究中获得的Chl位点能量估计值提出了担忧[Reinot, T; 等人,《分析化学洞察》2016年,11卷,35 - 48页],但最近由圆偏振发光(CPL)光谱形状给出的新归属[Hall, J.; 等人,《生物化学与生物物理学报》2016年,1857卷,1580 - 1593页]需要我们发表评论。我们证明,其他低能Chl的组合能同样良好或更好地同时拟合各种光谱(吸收、发射、CPL、圆二色性和非共振烧孔光谱),但更重要的是,我们揭示了最近研究的复合物的异质性,并认为已发表的CPL的复合性质(由CPL、CPL和CPL贡献)并不代表完整的CP47蛋白。提取了完整蛋白的正CPL,当它与多个其他光谱同时拟合时,能提供关于完整和不稳定的CP47复合物的激子结构及其最低能态的新信息。