Site-directed mutagenesis of two amino acid residues in cytochrome b559 α subunit that interact with a phosphatidylglycerol molecule (PG772) induces quinone-dependent inhibition of photosystem II activity

被引:0
作者
Kaichiro Endo
Koichi Kobayashi
Hsing-Ting Wang
Hsiu-An Chu
Jian-Ren Shen
Hajime Wada
机构
[1] The University of Tokyo,Department of Life Sciences, Graduate School of Arts and Sciences
[2] Academia Sinica,Institute of Plant and Microbial Biology
[3] Okayama University,Research Institute for Interdisciplinary Science, Graduate School of Natural Science and Technology
来源
Photosynthesis Research | 2019年 / 139卷
关键词
Cytochrome ; Phosphatidylglycerol; Photosystem II; Site-directed mutagenesis;
D O I
暂无
中图分类号
学科分类号
摘要
X-ray crystallographic analysis (1.9-Å resolution) of the cyanobacterial photosystem II (PSII) dimer showed the presence of five phosphatidylglycerol (PG) molecules per reaction center. One of the PG molecules, PG772, is located in the vicinity of the QB-binding site. To investigate the role of PG772 in PSII, we performed site-directed mutagenesis in the cytochrome (Cyt) b559 α subunit of Synechocystis sp. PCC 6803 to change two amino acids, Thr-5 and Ser-11, which interact with PG772. The photosynthetic activity of intact cells was slightly lower in all mutants than that of cells in the control strain; however, the oxygen-evolving PSII activity was decreased markedly in cells of mutants, as measured using artificial quinones (such as p-benzoquinone). Furthermore, electron transport from QA to QB was inhibited in mutants incubated with quinones, particularly under high-intensity light conditions. Lipid analysis of purified PSII showed approximately one PG molecule per reaction center, presumably PG772, was lost in the PSII dimer from the T5A and S11A mutants compared with that in the PSII dimer from the control strain. In addition, protein analysis of monomer and dimer showed decreased levels of PsbV and PsbU extrinsic proteins in the PSII monomer purified from T5A and S11A mutants. These results suggest that site-directed mutagenesis of Thr-5 and Ser-11, which presumably causes the loss of PG772, induces quinone-dependent inhibition of PSII activity under high-intensity light conditions and destabilizes the binding of extrinsic proteins to PSII.
引用
收藏
页码:267 / 279
页数:12
相关论文
共 182 条
[1]  
Barbato R(1995)Characterization of the light-induced cross-linking of the α-subunit of cytochrome J Biol Chem 270 24032-24037
[2]  
Friso G(1961) and the D1 protein in isolated photosystem II reaction centers Can J Biochem Physiol 37 911-917
[3]  
Ponticos M(2009)A rapid method of total lipid extraction and purification Biochim Biophys Acta 1787 1179-1188
[4]  
Barber J(2013)Identification and characterization of a cytochrome Biochim Biophys Acta 1827 507-519
[5]  
Bligh EG(2016) 6803 mutant spontaneously generated from DCMU-inhibited photoheterotrophical growth conditions Front Plant Sci 6 1-7
[6]  
Dyer WJ(2015)Spectroscopic and functional characterization of cyanobacterium Photosynth Res 126 385-397
[7]  
Chiu YF(2016) PCC 6803 mutants on the cytoplasmic-side of cytochrome Plant Cell Physiol 57 2461-2471
[8]  
Lin WC(1991) in photosystem II Plant Cell Physiol 32 205-211
[9]  
Wu CM(2002)The roles of cytochrome Biochemistry 41 3796-3802
[10]  
Chen YH(2009) in assembly and photoprotection of photosystem II revealed by site-directed mutagenesis studies Nat Struct Mol Biol 16 334-342