Haraguchi Norihisa, Kaseda Jun, Nakayama Yasumune, Nagahama Kazuhiro, Ogawa Takahira, Matsuoka Masayoshi
Department of Applied Microbial Technology, Faculty of Biotechnology and Life Science, Sojo University, 4-22-1 Ikeda, Kumamoto 860-0082, Japan.
Department of Applied Microbial Technology, Faculty of Biotechnology and Life Science, Sojo University, 4-22-1 Ikeda, Kumamoto 860-0082, Japan.
J Biosci Bioeng. 2018 Oct;126(4):417-424. doi: 10.1016/j.jbiosc.2018.04.015. Epub 2018 Jun 8.
Photosystem II complex embedded in thylakoid membrane performs oxygenic photosynthesis where the reaction center D1/D2 heterodimer accommodates all components of the electron transport chain. To express thermostable D1/D2 heterodimer in a cyanobacterium Synechococcus elongatus PCC 7942, we constructed a series of mutant strains whose psbA1 and psbD1 genes encoding, respectively, the most highly expressed D1 and D2 polypeptides were replaced with those of a thermophilic strain, Thermosynechococcus vulcanus. Because the C-terminal 16 amino acid sequences of D1 polypeptides should be processed prior to maturation but diverge from each other, we also constructed the psbA1ΔC-replaced strain expressing a thermostable D1 polypeptide devoid of the C-terminal extension. The psbA1/psbD1-replaced strain showed decreased growth rate and oxygen evolution rate, suggesting inefficient photosystem II. Immunoblot analyses for thermostable D1, D2 polypeptides revealed that the heterologous D1 protein was absent in thylakoid membrane from any mutant strains with psbA1, psbA1ΔC, and psbA1/psbD1-replacements, whereas the heterologous D2 protein was present in thylakoid membrane as well as purified photosystem II complex from the psbA1/psbD1-replaced strain. In the latter strain, the compensatory expression of psbA3 and psbD2 genes was elevated. These data suggest that heterologous D2 polypeptide could be combined with the host D1 polypeptide to form chimeric D1/D2 heterodimer, whereas heterologous D1 polypeptide even without the C-terminal extension was unable to make complex with the host D2 polypeptide. Since the heterologous D1 could not be detected even in the whole cells of psbA1/psbD1-replaced strain, the rapid degradation of unprocessed or unassembled heterologous D1 was implicated.
嵌入类囊体膜中的光系统II复合物进行产氧光合作用,其中反应中心D1/D2异二聚体容纳电子传递链的所有组分。为了在蓝藻聚球藻PCC 7942中表达耐热的D1/D2异二聚体,我们构建了一系列突变株,其分别编码表达量最高的D1和D2多肽的psbA1和psbD1基因被嗜热菌株嗜热栖热菌的相应基因所取代。由于D1多肽的C末端16个氨基酸序列在成熟前需要加工但彼此不同,我们还构建了psbA1ΔC取代株,其表达不含C末端延伸的耐热D1多肽。psbA1/psbD1取代株显示生长速率和放氧速率降低,表明光系统II效率低下。对耐热D1、D2多肽的免疫印迹分析表明,在psbA1、psbA1ΔC和psbA1/psbD1取代的任何突变株的类囊体膜中均不存在异源D1蛋白,而在psbA1/psbD1取代株的类囊体膜以及纯化的光系统II复合物中存在异源D2蛋白。在后一种菌株中,psbA3和psbD2基因的补偿性表达升高。这些数据表明,异源D2多肽可以与宿主D1多肽结合形成嵌合D1/D2异二聚体,而即使没有C末端延伸的异源D1多肽也无法与宿主D2多肽形成复合物。由于在psbA1/psbD1取代株的全细胞中甚至检测不到异源D1,因此推测未加工或未组装的异源D1会迅速降解。