Zheleva D, Sharma J, Panico M, Morris H R, Barber J
Wolfson Laboratories, Department of Biochemistry, Imperial College of Science, Technology and Medicine, London SW7 2AY, United Kingdom.
J Biol Chem. 1998 Jun 26;273(26):16122-7. doi: 10.1074/jbc.273.26.16122.
Using the detergents n-dodecyl beta-D-maltoside and heptyl thioglycopyranoside, a subcore complex of photosystem II (PSII) has been isolated that contains the chlorophyll-binding protein, CP47, and the reaction center components, D1, D2, and cytochrome b559. We have found, by using sucrose density centrifugation, that the resulting preparation consisted of a mixture of dimeric and monomeric forms of the CP47 reaction center (RC) complex, having molecular masses of 410 +/- 30 and 200 +/- 28 kDa, respectively, as estimated by size exclusion chromatography. The level of the dimer in the preparation is significantly higher than the monomeric form. Both the monomer and dimer contain the proteins CP47, D1, and D2 and the alpha- and beta-subunits of cytochrome b559. Analyses by mass spectrometry and N-terminal sequencing showed that both forms of the CP47-RC complex contain the products of the psbI, psbTc (chloroplast gene), and psbW with molecular masses of 4195.5, 3849.6, and 5927.4 Da, respectively. In contrast to the monomeric form, the CP47-RC dimer contained two extra proteins with low molecular weights, identified as the products of the psbL and psbK genes having molecular masses of 4365.5 and 4292.1, respectively. It was also found that the dimer contained slightly more molecules of chlorophyll a (21 +/- 2.5) than the monomer (18 +/- 1.5), a characteristic also observed in the room temperature absorption spectrum by comparing the ratio of absorption at 416 and 435 nm. Of particular note was the finding that the dimer, but not the monomer, contained plastoquinone-9 (estimated to be 1.5 +/- 0.3 molecules per RC). The results indicate that the CP47-RC monomer is derived from the dimeric form of the complex, and therefore the latter is likely to represent an in vivo conformation. The PsbTc as well as the PsbI and PsbW proteins are identified as being intimately associated with the D1 and D2 proteins, and in the case of the dimer, importance is placed on the PsbL and PsbK proteins in sustaining plastoquinone binding and maintenance of the dimeric organization. Assuming only one copy of the alpha- and beta-subunits of cytochrome b559, the monomeric and dimeric forms of the complex would be expected to contain 21 and 23 x 2 transmembrane helices, respectively.
使用去污剂正十二烷基-β-D-麦芽糖苷和硫代吡喃葡萄糖庚酯,已分离出光系统II(PSII)的亚核心复合物,该复合物包含叶绿素结合蛋白CP47以及反应中心组分D1、D2和细胞色素b559。我们通过蔗糖密度离心发现,所得制剂由CP47反应中心(RC)复合物的二聚体和单体形式的混合物组成,通过尺寸排阻色谱估计,其分子量分别为410±30 kDa和200±28 kDa。制剂中二聚体的水平明显高于单体形式。单体和二聚体均包含蛋白质CP47、D1和D2以及细胞色素b559的α和β亚基。质谱分析和N端测序表明,CP47-RC复合物的两种形式均包含psbI、psbTc(叶绿体基因)和psbW的产物,分子量分别为4195.5、3849.6和5927.4 Da。与单体形式不同,CP47-RC二聚体包含两种额外的低分子量蛋白质,被鉴定为psbL和psbK基因的产物,分子量分别为4365.5和4292.1 Da。还发现二聚体比单体含有略多的叶绿素a分子(21±2.5个),通过比较416和435 nm处的吸收比值,在室温吸收光谱中也观察到了这一特征。特别值得注意的是,二聚体而非单体含有质体醌-9(估计每个RC为1.5±0.3个分子)。结果表明,CP47-RC单体源自复合物的二聚体形式,因此后者可能代表体内构象。PsbTc以及PsbI和PsbW蛋白被确定与D1和D2蛋白密切相关,对于二聚体而言,PsbL和PsbK蛋白在维持质体醌结合和二聚体结构的维持方面具有重要作用。假设细胞色素b559的α和β亚基只有一个拷贝,预计复合物的单体和二聚体形式分别包含21个和23×2个跨膜螺旋。