Andronis C, Kruse O, Deák Z, Vass I, Diner B A, Nixon P J
Department of Biochemistry, Imperial College of Science, Technology and Medicine, London SW7 2AY, United Kingdom.
Plant Physiol. 1998 Jun;117(2):515-24. doi: 10.1104/pp.117.2.515.
The D2 polypeptide of the photosystem II (PSII) complex in the green alga Chlamydomonas reinhardtii is thought to be reversibly phosphorylated. By analogy to higher plants, the phosphorylation site is likely to be at residue threonine-2 (Thr-2). We have investigated the role of D2 phosphorylation by constructing two mutants in which residue Thr-2 has been replaced by either alanine or serine. Both mutants grew photoautotrophically at wild-type rates, and noninvasive biophysical measurements, including the decay of chlorophyll fluorescence, the peak temperature of thermoluminescence bands, and rates of oxygen evolution, indicate little perturbation to electron transfer through the PSII complex. The susceptibility of mutant PSII to photoinactivation as measured by the light-induced loss of PSII activity in whole cells in the presence of the protein-synthesis inhibitors chloramphenicol or lincomycin was similar to that of wild type. These results indicate that phosphorylation at Thr-2 is not required for PSII function or for protection from photoinactivation. In control experiments the phosphorylation of D2 in wild-type C. reinhardtii was examined by 32P labeling in vivo and in vitro. No evidence for the phosphorylation of D2 in the wild type could be obtained. [14C]Acetate-labeling experiments in the presence of an inhibitor of cytoplasmic protein synthesis also failed to identify phosphorylated (D2.1) and nonphosphorylated (D2.2) forms of D2 upon sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Our results suggest that the existence of D2 phosphorylation in C. reinhardtii is still in question.
人们认为绿藻莱茵衣藻光系统II(PSII)复合物中的D2多肽会发生可逆磷酸化。类比高等植物,磷酸化位点可能在苏氨酸-2(Thr-2)残基处。我们通过构建两个突变体来研究D2磷酸化的作用,在这两个突变体中,Thr-2残基分别被丙氨酸或丝氨酸取代。两个突变体均以野生型速率进行光合自养生长,包括叶绿素荧光衰减、热释光带的峰值温度和氧气释放速率在内的非侵入性生物物理测量表明,通过PSII复合物的电子传递几乎没有受到干扰。在存在蛋白质合成抑制剂氯霉素或林可霉素的情况下,通过全细胞中光诱导的PSII活性丧失来测量的突变体PSII对光失活的敏感性与野生型相似。这些结果表明,Thr-2处的磷酸化对于PSII功能或防止光失活并非必需。在对照实验中,通过体内和体外的32P标记来检测野生型莱茵衣藻中D2的磷酸化情况。未获得野生型中D2磷酸化的证据。在存在细胞质蛋白质合成抑制剂的情况下进行的[14C]乙酸盐标记实验,在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳中也未能鉴定出D2的磷酸化形式(D2.1)和非磷酸化形式(D2.2)。我们的结果表明,莱茵衣藻中D2磷酸化的存在仍存在疑问。