Chiaramonte S, Giacometti G M, Bergantino E
Dipartimento di Biologia, Università di Padova, Italy.
Eur J Biochem. 1999 Mar;260(3):833-43. doi: 10.1046/j.1432-1327.1999.00226.x.
A Synechocystis 6803 mutant carrying a chimaeric photosystem II (PSII), in which the Zea mays PsbH subunit (7.7 kDa calculated molecular mass) replaces the cyanobacterial copy (7.0 kDa), was constructed. With the exception of the N-terminal 12 amino acid extension, which has a phosphorylatable threonine, the eukaryotic polypeptide is 78% homologous to its bacterial counterpart. Biochemical characterization of this mutant shows that it expresses the engineered gene correctly and is competent for photoautotrophic growth. Fluorescence analysis and oxygen evolution measurements in the presence of exogenous acceptors indicate that the observed phenotype results from a chimaeric PSII rather than from the absence of function associated with PsbH, suggesting that the heterologous protein is assembled into a functional PSII. Inhibition of oxygen evolution by herbicides belonging to different classes shows that the sensitivity of the mutant PSII is changed only towards phenolic compounds. This result indicates slight conformational modification of the QB/herbicide binding pocket of the D1 polypeptide caused by the bulky PsbH protein in the mutant, and also suggests close structural interaction of the D1 and PsbH subunits in the topological arrangement of PSII.
构建了集胞藻6803突变体,其携带嵌合光系统II(PSII),其中玉米的PsbH亚基(计算分子量为7.7 kDa)取代了蓝细菌的对应亚基(7.0 kDa)。除了具有可磷酸化苏氨酸的N端12个氨基酸延伸外,真核多肽与其细菌对应物的同源性为78%。该突变体的生化特性表明其正确表达了工程基因,并且能够进行光合自养生长。在外源受体存在下的荧光分析和放氧测量表明,观察到的表型是由嵌合PSII引起的,而不是由于与PsbH相关的功能缺失,这表明异源蛋白组装成了功能性PSII。不同类别的除草剂对放氧的抑制作用表明,突变体PSII的敏感性仅对酚类化合物发生了变化。这一结果表明,突变体中庞大的PsbH蛋白导致D1多肽的QB/除草剂结合口袋发生了轻微的构象修饰,也表明在PSII的拓扑结构中D1和PsbH亚基存在紧密的结构相互作用。