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光系统II中能量最低的叶绿素与外周天线相邻:通过圆偏振发光确定的CP47发射态。

The lowest-energy chlorophyll of photosystem II is adjacent to the peripheral antenna: Emitting states of CP47 assigned via circularly polarized luminescence.

作者信息

Hall Jeremy, Renger Thomas, Müh Frank, Picorel Rafael, Krausz Elmars

机构信息

Research School of Chemistry, The Australian National University, Canberra, Australia.

Institut für Theoretische Physik, Johannes Kepler Universität, Linz, Austria.

出版信息

Biochim Biophys Acta. 2016 Sep;1857(9):1580-1593. doi: 10.1016/j.bbabio.2016.06.007. Epub 2016 Jun 21.

Abstract

The identification of low-energy chlorophyll pigments in photosystem II (PSII) is critical to our understanding of the kinetics and mechanism of this important enzyme. We report parallel circular dichroism (CD) and circularly polarized luminescence (CPL) measurements at liquid helium temperatures of the proximal antenna protein CP47. This assembly hosts the lowest-energy chlorophylls in PSII, responsible for the well-known "F695" fluorescence band of thylakoids and PSII core complexes. Our new spectra enable a clear identification of the lowest-energy exciton state of CP47. This state exhibits a small but measurable excitonic delocalization, as predicated by its CD and CPL. Using structure-based simulations incorporating the new spectra, we propose a revised set of site energies for the 16 chlorophylls of CP47. The significant difference from previous analyses is that the lowest-energy pigment is assigned as Chl 612 (alternately numbered Chl 11). The new assignment is readily reconciled with the large number of experimental observations in the literature, while the most common previous assignment for the lowest energy pigment, Chl 627(29), is shown to be inconsistent with CD and CPL results. Chl 612(11) is near the peripheral light-harvesting system in higher plants, in a lumen-exposed region of the thylakoid membrane. The low-energy pigment is also near a recently proposed binding site of the PsbS protein. This result consequently has significant implications for our understanding of the kinetics and regulation of energy transfer in PSII.

摘要

确定光系统II(PSII)中低能量叶绿素色素对于我们理解这种重要酶的动力学和机制至关重要。我们报告了在液氦温度下对近端天线蛋白CP47进行的平行圆二色性(CD)和圆偏振发光(CPL)测量。该组件包含PSII中能量最低的叶绿素,这些叶绿素是类囊体和PSII核心复合物中著名的“F695”荧光带的来源。我们的新光谱能够清晰地识别CP47的最低能量激子态。正如其CD和CPL所预测的那样,该状态表现出小但可测量的激子离域。通过结合新光谱的基于结构的模拟,我们为CP47的16种叶绿素提出了一组修订后的位点能量。与先前分析的显著差异在于,最低能量色素被指定为Chl 612(也编号为Chl 11)。新的指定很容易与文献中的大量实验观察结果相协调,而先前对最低能量色素最常见的指定Chl 627(29)被证明与CD和CPL结果不一致。Chl 612(11)位于高等植物外周光捕获系统附近,在类囊体膜的腔暴露区域。这种低能量色素也靠近最近提出的PsbS蛋白结合位点。因此,这一结果对于我们理解PSII中能量转移的动力学和调节具有重要意义。

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