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荷兰原绿球藻中叶绿素a/b结合蛋白Pcb与光系统I和光系统II的关联

Association of chlorophyll a/b-binding Pcb proteins with photosystems I and II in Prochlorothrix hollandica.

作者信息

Boichenko Vladimir A, Pinevich Alexander V, Stadnichuk Igor N

机构信息

Institute of Basic Biological Problems, Russian Academy of Sciences, Pushchino 142290, Russia.

出版信息

Biochim Biophys Acta. 2007 Jun;1767(6):801-6. doi: 10.1016/j.bbabio.2006.11.001. Epub 2006 Nov 7.

Abstract

Action spectra for photosystem II (PSII)-driven oxygen evolution and of photosystem I (PSI)-mediated H(2) photoproduction and photoinhibition of respiration were used to determine the participation of chlorophyll (Chl) a/b-binding Pcb proteins in the functions of pigment apparatus of Prochlorothrix hollandica. Comparison of the in situ action spectra with absorption spectra of PSII and PSI complexes isolated from the cyanobacterium Synechocystis 6803 revealed a shoulder at 650 nm that indicated presence of Chl b in the both photosystems of P. hollandica. Fitting of two action spectra to absorption spectrum of the cells showed a chlorophyll ratio of 4:1 in favor of PSI. Effective antenna sizes estimated from photochemical cross-sections of the relevant photoreactions were found to be 192+/-28 and 139+/-15 chlorophyll molecules for the competent PSI and PSII reaction centers, respectively. The value for PSI is in a quite good agreement with previous electron microscopy data for isolated Pcb-PSI supercomplexes from P. hollandica that show a trimeric PSI core surrounded by a ring of 18 Pcb subunits. The antenna size of PSII implies that the PSII core dimers are associated with approximately 14 Pcb light-harvesting proteins, and form the largest known Pcb-PSII supercomplexes.

摘要

利用光系统II(PSII)驱动的放氧作用光谱、光系统I(PSI)介导的产氢作用光谱以及呼吸作用的光抑制光谱,来确定叶绿素(Chl)a/b结合蛋白Pcb在荷兰原绿球藻色素装置功能中的参与情况。将原位作用光谱与从集胞藻6803分离得到的PSII和PSI复合物的吸收光谱进行比较,发现在650 nm处有一个肩峰,这表明在荷兰原绿球藻的两个光系统中都存在Chl b。将两个作用光谱与细胞的吸收光谱进行拟合,结果显示叶绿素比例为4:1,有利于PSI。根据相关光反应的光化学截面估计,有功能的PSI和PSII反应中心的有效天线大小分别为192±28和139±15个叶绿素分子。PSI的这个值与先前关于从荷兰原绿球藻分离得到的Pcb-PSI超复合物的电子显微镜数据相当吻合,这些数据显示一个三聚体PSI核心被18个Pcb亚基组成的环包围。PSII的天线大小意味着PSII核心二聚体与大约14个Pcb光捕获蛋白相关联,并形成了已知最大的Pcb-PSII超复合物。

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