Accumulation of Cyanobacterial Photosystem II Containing the 'Rogue' D1 Subunit Is Controlled by FtsH Protease and Synthesis of the Standard D1 Protein

被引:0
|
作者
Masuda, Takako [1 ,4 ]
Beckova, Martina [1 ]
Turoczy, Zoltan [1 ]
Pilny, Jan [1 ]
Sobotka, Roman [1 ,2 ]
Trinugroho, Joko P. [3 ]
Nixon, Peter J. [3 ]
Prasil, Ondrej [1 ]
Komenda, Josef [1 ,2 ]
机构
[1] Czech Acad Sci, Inst Microbiol, Ctr Algatech, Opatovicky Mlyn, Trebon 37901, Czech Republic
[2] Univ South Bohemia, Fac Sci, Branisovska 1760, Ceske Budejovice 37005, Czech Republic
[3] Imperial Coll London, Dept Life Sci, Sir Ernst Chain Bldg Wolfson Labs, South Kensington Campus, London SW7 2AZ, England
[4] Japan Fisheries Res & Educ Agcy, Fisheries Resources Inst, Shiogama, Miyagi 9850001, Japan
基金
英国生物技术与生命科学研究理事会;
关键词
Chlorophyll biosynthesis; Crocosphaera watsonii; Photosystem II; Rogue D1; Synechocystis; SYNECHOCYSTIS PCC 6803; NITROGEN-FIXATION; CHLOROPHYLL BIOSYNTHESIS; GENE-EXPRESSION; D2; PROTEINS; SP PCC-6803; LIGHT-DARK; DEGRADATION; STRAIN; REPAIR;
D O I
10.1093/pcp/pcad027
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Unicellular diazotrophic cyanobacteria contribute significantly to the photosynthetic productivity of the ocean and the fixation of molecular nitrogen, with photosynthesis occurring during the day and nitrogen fixation during the night. In species like Crocosphaera watsonii WH8501, the decline in photosynthetic activity in the night is accompanied by the disassembly of oxygen-evolving photosystem II (PSII) complexes. Moreover, in the second half of the night phase, a small amount of rogue D1 (rD1), which is related to the standard form of the D1 subunit found in oxygen-evolving PSII, but of unknown function, accumulates but is quickly degraded at the start of the light phase. We show here that the removal of rD1 is independent of the rD1 transcript level, thylakoid redox state and trans-thylakoid pH but requires light and active protein synthesis. We also found that the maximal level of rD1 positively correlates with the maximal level of chlorophyll (Chl) biosynthesis precursors and enzymes, which suggests a possible role for rogue PSII (rPSII) in the activation of Chl biosynthesis just before or upon the onset of light, when new photosystems are synthesized. By studying strains of Synechocystis PCC 6803 expressing Crocosphaera rD1, we found that the accumulation of rD1 is controlled by the light-dependent synthesis of the standard D1 protein, which triggers the fast FtsH2-dependent degradation of rD1. Affinity purification of FLAG-tagged rD1 unequivocally demonstrated the incorporation of rD1 into a non-oxygen-evolving PSII complex, which we term rPSII. The complex lacks the extrinsic proteins stabilizing the oxygen-evolving Mn4CaO5 cluster but contains the Psb27 and Psb28-1 assembly factors.
引用
收藏
页码:660 / 673
页数:14
相关论文
共 50 条
  • [1] The thylakoid FtsH protease plays a role in the light-induced turnover of the photosystem II D1 protein
    Lindahl, M
    Spetea, C
    Hundal, T
    Oppenheim, AB
    Adam, Z
    Andersson, B
    [J]. PLANT CELL, 2000, 12 (03): : 419 - 431
  • [2] One-helix protein 2 is not required for the synthesis of photosystem II subunit D1 in Chlamydomonas
    Wang, Fei
    Dischinger, Korbinian
    Westrich, Lisa Desiree
    Meindl, Irene
    Egidi, Felix
    Troesch, Raphael
    Sommer, Frederik
    Johnson, Xenie
    Schroda, Michael
    Nickelsen, Joerg
    Willmund, Felix
    Vallon, Olivier
    Bohne, Alexandra-Viola
    [J]. PLANT PHYSIOLOGY, 2023, 191 (03) : 1612 - 1633
  • [3] Site-directed mutations at residue 251 of the photosystem II D1 protein of Chlamydomonas that result in a nonphotosynthetic phenotype and impair D1 synthesis and accumulation
    Lardans, A
    Gillham, NW
    Boynton, JE
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (01) : 210 - 216
  • [4] Degradation of the D1 protein of photosystem II in Synechocystis PCC6803 under light and heat stresses -: The role of an FtsH protease
    Kamata, T
    Hiramoto, H
    Morita, N
    Yamamoto, Y
    [J]. PLANT AND CELL PHYSIOLOGY, 2005, 46 : S181 - S181
  • [5] Variants of photosystem II D1 protein in Thermosynechococcus elongatus
    Miwa Sugiura
    Alain Boussac
    [J]. Research on Chemical Intermediates, 2014, 40 : 3219 - 3229
  • [6] Variants of photosystem II D1 protein in Thermosynechococcus elongatus
    Sugiura, Miwa
    Boussac, Alain
    [J]. RESEARCH ON CHEMICAL INTERMEDIATES, 2014, 40 (09) : 3219 - 3229
  • [7] Sequence variation at the oxygen-evolving centre of photosystem II: a new class of 'rogue' cyanobacterial D1 proteins
    Murray, James W.
    [J]. PHOTOSYNTHESIS RESEARCH, 2012, 110 (03) : 177 - 184
  • [8] Sequence variation at the oxygen-evolving centre of photosystem II: a new class of ‘rogue’ cyanobacterial D1 proteins
    James W. Murray
    [J]. Photosynthesis Research, 2012, 110 : 177 - 184
  • [9] Quality control of photosystem II : Cleavage of reaction center D1 protein in spinach thylakoids by FtsH protease under moderate heat stress
    Yoshioka, Miho
    Uchida, Suguru
    Mori, Hiroki
    Komayama, Keisuke
    Ohira, Satoshi
    Morita, Noriko
    Nakanishi, Tohru
    Yamamoto, Yasushi
    [J]. PLANT AND CELL PHYSIOLOGY, 2007, 48 : S171 - S171
  • [10] Quality control of photosystem II - Cleavage of reaction center D1 protein in spinach thylakoids by FtsH protease under moderate heat stress
    Yoshioka, Miho
    Uchida, Suguru
    Mori, Hiroki
    Komayama, Keisuke
    Ohira, Satoshi
    Morita, Noriko
    Nakanishi, Tohru
    Yamamoto, Yasusi
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2006, 281 (31) : 21660 - 21669