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光系统II反应中心中色素的组织及其相互作用:具有修饰脱镁叶绿素组成的反应中心在6K下的光谱学研究

Pigment organization and their interactions in reaction centers of photosystem II: optical spectroscopy at 6 K of reaction centers with modified pheophytin composition.

作者信息

Germano M, Shkuropatov A Y, Permentier H, de Wijn R, Hoff A J, Shuvalov V A, van Gorkom H J

机构信息

Biophysics Department, Huygens Laboratory, Leiden University, P.O. Box 9504, 2300 RA Leiden, The Netherlands.

出版信息

Biochemistry. 2001 Sep 25;40(38):11472-82. doi: 10.1021/bi010439j.

Abstract

Photosystem II reaction centers (RC) with selectively exchanged pheophytin (Pheo) molecules as described in [Germano, M., Shkuropatov, A. Ya., Permentier, H., Khatypov, R. A., Shuvalov, V. A., Hoff, A. J., and van Gorkom, H. J. (2000) Photosynth. Res. 64, 189-198] were studied by low-temperature absorption, linear and circular dichroism, and triplet-minus-singlet absorption-difference spectroscopy. The ratio of extinction coefficients epsilon(Pheo)/epsilon(Chl) for Q(Y) absorption in the RC is approximately 0.40 at 6 K and approximately 0.45 at room temperature. The presence of 2 beta-carotenes, one parallel and one perpendicular to the membrane plane, is confirmed. Absorption at 670 nm is due to the perpendicular Q(Y) transitions of the two peripheral chlorophylls (Chl) and not to either Pheo. The "core" pigments, two Pheo and four Chl absorb in the 676-685 nm range. Delocalized excited states as predicted by the "multimer model" are seen in the active branch. The inactive Pheo and the nearby Chl, however, mainly contribute localized transitions at 676 and 680 nm, respectively, although large CD changes indicate that exciton interactions are present on both branches. Replacement of the active Pheo prevents triplet formation, causes an LD increase at 676 and 681 nm, a blue-shift of 680 nm absorbance, and a bleach of the 685 nm exciton band. The triplet state is mainly localized on the Chl corresponding to B(A) in purple bacteria. Both Pheo Q(Y) transitions are oriented out of the membrane plane. Their Q(X) transitions are parallel to that plane, so that the Pheos in PSII are structurally similar to their homologues in purple bacteria.

摘要

如[Germano, M., Shkuropatov, A. Ya., Permentier, H., Khatypov, R. A., Shuvalov, V. A., Hoff, A. J., and van Gorkom, H. J. (2000) Photosynth. Res. 64, 189 - 198]所述,具有选择性交换脱镁叶绿素(Pheo)分子的光系统II反应中心(RC)通过低温吸收、线性和圆二色性以及三线态减单重态吸收差光谱进行了研究。在6 K时,RC中Q(Y)吸收的消光系数比ε(Pheo)/ε(Chl)约为0.40,在室温下约为0.45。证实存在两个β-胡萝卜素,一个与膜平面平行,一个与膜平面垂直。670 nm处的吸收归因于两个外周叶绿素(Chl)的垂直Q(Y)跃迁,而非Pheo。“核心”色素,两个Pheo和四个Chl在676 - 685 nm范围内吸收。在活性分支中观察到了“多聚体模型”预测的离域激发态。然而,非活性Pheo和附近的Chl分别主要在676和680 nm处贡献局域跃迁,尽管大的CD变化表明两个分支上都存在激子相互作用。活性Pheo的替换阻止了三线态的形成,导致676和681 nm处的LD增加,680 nm吸光度的蓝移以及685 nm激子带的漂白。三线态主要定域在与紫色细菌中B(A)相对应的Chl上。两个Pheo的Q(Y)跃迁都取向于膜平面之外。它们的Q(X)跃迁与该平面平行,因此PSII中的Pheo在结构上与其在紫色细菌中的同源物相似。

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