FtsH is involved in the early stages of repair of photosystem II in Synechocystis sp PCC 6803
Silva P, Thompson E, Bailey S, Kruse O, Mullineaux CW, Robinson C, Mann NH, Nixon PJ (2003)
PLANT CELL 15(9): 2152-2164.
Zeitschriftenaufsatz
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Autor*in
Silva, P;
Thompson, E;
Bailey, S;
Kruse, OlafUniBi ;
Mullineaux, CW;
Robinson, C;
Mann, NH;
Nixon, PJ
Einrichtung
Abstract / Bemerkung
When plants, algae, and cyanobacteria are exposed to excessive light, especially in combination with other environmental stress conditions such as extreme temperatures, their photosynthetic performance declines. A major cause of this photoinhibition is the light-induced irreversible photodamage to the photosystem II (PSII) complex responsible for photosynthetic oxygen evolution. A repair cycle operates to selectively replace a damaged D1 subunit within PSII with a newly synthesized copy followed by the light-driven reactivation of the complex. Net loss of PSII activity occurs (photoinhibition) when the rate of damage exceeds the rate of repair. The identities of the chaperones and proteases involved in the replacement of D1 in vivo remain uncertain. Here, we show that one of the four members of the FtsH family of proteases (cyanobase designation slr0228) found in the cyanobacterium Synechocystis sp PCC 6803 is important for the repair of PSII and is vital for preventing chronic photoinhibition. Therefore, the ftsH gene family is not functionally redundant with respect to the repair of PSII in this organism. Our data also indicate that FtsH binds directly to PSII, is involved in the early steps of D1 degradation, and is not restricted to the removal of D1 fragments. These results, together with the recent analysis of ftsH mutants of Arabidopsis, highlight the critical role played by FtsH proteases in the removal of damaged D1 from the membrane and the maintenance of PSII activity in vivo.
Erscheinungsjahr
2003
Zeitschriftentitel
PLANT CELL
Band
15
Ausgabe
9
Seite(n)
2152-2164
ISSN
1040-4651
eISSN
1532-298X
Page URI
https://pub.uni-bielefeld.de/record/1610183
Zitieren
Silva P, Thompson E, Bailey S, et al. FtsH is involved in the early stages of repair of photosystem II in Synechocystis sp PCC 6803. PLANT CELL. 2003;15(9):2152-2164.
Silva, P., Thompson, E., Bailey, S., Kruse, O., Mullineaux, C. W., Robinson, C., Mann, N. H., et al. (2003). FtsH is involved in the early stages of repair of photosystem II in Synechocystis sp PCC 6803. PLANT CELL, 15(9), 2152-2164. https://doi.org/10.1105/tpc.012609
Silva, P, Thompson, E, Bailey, S, Kruse, Olaf, Mullineaux, CW, Robinson, C, Mann, NH, and Nixon, PJ. 2003. “FtsH is involved in the early stages of repair of photosystem II in Synechocystis sp PCC 6803”. PLANT CELL 15 (9): 2152-2164.
Silva, P., Thompson, E., Bailey, S., Kruse, O., Mullineaux, C. W., Robinson, C., Mann, N. H., and Nixon, P. J. (2003). FtsH is involved in the early stages of repair of photosystem II in Synechocystis sp PCC 6803. PLANT CELL 15, 2152-2164.
Silva, P., et al., 2003. FtsH is involved in the early stages of repair of photosystem II in Synechocystis sp PCC 6803. PLANT CELL, 15(9), p 2152-2164.
P. Silva, et al., “FtsH is involved in the early stages of repair of photosystem II in Synechocystis sp PCC 6803”, PLANT CELL, vol. 15, 2003, pp. 2152-2164.
Silva, P., Thompson, E., Bailey, S., Kruse, O., Mullineaux, C.W., Robinson, C., Mann, N.H., Nixon, P.J.: FtsH is involved in the early stages of repair of photosystem II in Synechocystis sp PCC 6803. PLANT CELL. 15, 2152-2164 (2003).
Silva, P, Thompson, E, Bailey, S, Kruse, Olaf, Mullineaux, CW, Robinson, C, Mann, NH, and Nixon, PJ. “FtsH is involved in the early stages of repair of photosystem II in Synechocystis sp PCC 6803”. PLANT CELL 15.9 (2003): 2152-2164.
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UNIPROT
1 Eintrag gefunden, die diesen Artikel zitieren
ATP-dependent zinc metalloprotease FtsH 2 (UNIPROT: Q55700)
Organism: Synechocystis sp. (strain PCC 6803 / Kazusa)
Download in FASTA format
Organism: Synechocystis sp. (strain PCC 6803 / Kazusa)
Download in FASTA format
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Khatoon M, Inagawa K, Pospísil P, Yamashita A, Yoshioka M, Lundin B, Horie J, Morita N, Jajoo A, Yamamoto Y, Yamamoto Y., J Biol Chem 284(37), 2009
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Khatoon M, Inagawa K, Pospísil P, Yamashita A, Yoshioka M, Lundin B, Horie J, Morita N, Jajoo A, Yamamoto Y, Yamamoto Y., J Biol Chem 284(37), 2009
PMID: 19617353
From small hosts come big viruses: the complete genome of a second Ostreococcus tauri virus, OtV-1.
Weynberg KD, Allen MJ, Ashelford K, Scanlan DJ, Wilson WH., Environ Microbiol 11(11), 2009
PMID: 19650882
Weynberg KD, Allen MJ, Ashelford K, Scanlan DJ, Wilson WH., Environ Microbiol 11(11), 2009
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Stress responses in Prochlorococcus MIT9313 vs. SS120 involve differential expression of genes encoding proteases ClpP, FtsH and Lon.
Gómez-Baena G, Rangel OA, López-Lozano A, García-Fernández JM, Diez J., Res Microbiol 160(8), 2009
PMID: 19732824
Gómez-Baena G, Rangel OA, López-Lozano A, García-Fernández JM, Diez J., Res Microbiol 160(8), 2009
PMID: 19732824
Deg/HtrA proteases as components of a network for photosystem II quality control in chloroplasts and cyanobacteria.
Huesgen PF, Schuhmann H, Adamska I., Res Microbiol 160(9), 2009
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Huesgen PF, Schuhmann H, Adamska I., Res Microbiol 160(9), 2009
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The variegated mutants lacking chloroplastic FtsHs are defective in D1 degradation and accumulate reactive oxygen species.
Kato Y, Miura E, Ido K, Ifuku K, Sakamoto W., Plant Physiol 151(4), 2009
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Derelle E, Ferraz C, Escande ML, Eychenié S, Cooke R, Piganeau G, Desdevises Y, Bellec L, Moreau H, Grimsley N., PLoS One 3(5), 2008
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Mutations in SUPPRESSOR OF VARIEGATION1, a factor required for normal chloroplast translation, suppress var2-mediated leaf variegation in Arabidopsis.
Yu F, Liu X, Alsheikh M, Park S, Rodermel S., Plant Cell 20(7), 2008
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Auxiliary proteins involved in the assembly and sustenance of photosystem II.
Mulo P, Sirpiö S, Suorsa M, Aro EM., Photosynth Res 98(1-3), 2008
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Edelman M, Mattoo AK., Photosynth Res 98(1-3), 2008
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Quality control of photosystem II: impact of light and heat stresses.
Yamamoto Y, Aminaka R, Yoshioka M, Khatoon M, Komayama K, Takenaka D, Yamashita A, Nijo N, Inagawa K, Morita N, Sasaki T, Yamamoto Y., Photosynth Res 98(1-3), 2008
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Yamamoto Y, Aminaka R, Yoshioka M, Khatoon M, Komayama K, Takenaka D, Yamashita A, Nijo N, Inagawa K, Morita N, Sasaki T, Yamamoto Y., Photosynth Res 98(1-3), 2008
PMID: 18937045
Evolutionary diversification of plant shikimate kinase gene duplicates.
Fucile G, Falconer S, Christendat D., PLoS Genet 4(12), 2008
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Fucile G, Falconer S, Christendat D., PLoS Genet 4(12), 2008
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A membrane-bound FtsH protease is involved in osmoregulation in Synechocystis sp. PCC 6803: the compatible solute synthesizing enzyme GgpS is one of the targets for proteolysis.
Stirnberg M, Fulda S, Huckauf J, Hagemann M, Krämer R, Marin K., Mol Microbiol 63(1), 2007
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Specific binding of D1 protein degradation products to the psbAI promoter in Synechococcus sp. strain PCC 7942.
Stelljes C, Koenig F., J Bacteriol 189(5), 2007
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Stelljes C, Koenig F., J Bacteriol 189(5), 2007
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Oxidative modifications to cellular components in plants.
Møller IM, Jensen PE, Hansson A., Annu Rev Plant Biol 58(), 2007
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Møller IM, Jensen PE, Hansson A., Annu Rev Plant Biol 58(), 2007
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Proteomics of Synechocystis sp. PCC 6803. Identification of novel integral plasma membrane proteins.
Pisareva T, Shumskaya M, Maddalo G, Ilag L, Norling B., FEBS J 274(3), 2007
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Pisareva T, Shumskaya M, Maddalo G, Ilag L, Norling B., FEBS J 274(3), 2007
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Variegation mutants and mechanisms of chloroplast biogenesis.
Yu F, Fu A, Aluru M, Park S, Xu Y, Liu H, Liu X, Foudree A, Nambogga M, Rodermel S., Plant Cell Environ 30(3), 2007
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Yu F, Fu A, Aluru M, Park S, Xu Y, Liu H, Liu X, Foudree A, Nambogga M, Rodermel S., Plant Cell Environ 30(3), 2007
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The thylakoid lumen protease Deg1 is involved in the repair of photosystem II from photoinhibition in Arabidopsis.
Kapri-Pardes E, Naveh L, Adam Z., Plant Cell 19(3), 2007
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Kapri-Pardes E, Naveh L, Adam Z., Plant Cell 19(3), 2007
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Formation of DEG5 and DEG8 complexes and their involvement in the degradation of photodamaged photosystem II reaction center D1 protein in Arabidopsis.
Sun X, Peng L, Guo J, Chi W, Ma J, Lu C, Zhang L., Plant Cell 19(4), 2007
PMID: 17449806
Sun X, Peng L, Guo J, Chi W, Ma J, Lu C, Zhang L., Plant Cell 19(4), 2007
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Molecular mechanisms of light stress of photosynthesis.
Vass I, Cser K, Cheregi O., Ann N Y Acad Sci 1113(), 2007
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Engineered ectopic expression of the psbA gene encoding the photosystem II D1 protein in Synechocystis sp. PCC6803.
Kommalapati M, Hwang HJ, Wang HL, Burnap RL., Photosynth Res 92(3), 2007
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Kommalapati M, Hwang HJ, Wang HL, Burnap RL., Photosynth Res 92(3), 2007
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FtsH protease is required for induction of inorganic carbon acquisition complexes in Synechocystis sp. PCC 6803.
Zhang P, Sicora CI, Vorontsova N, Allahverdiyeva Y, Battchikova N, Nixon PJ, Aro EM., Mol Microbiol 65(3), 2007
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Zhang P, Sicora CI, Vorontsova N, Allahverdiyeva Y, Battchikova N, Nixon PJ, Aro EM., Mol Microbiol 65(3), 2007
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Photosystem II damage induced by chemically generated singlet oxygen in tobacco leaves
Hideg É, Kós PB, Vass I., Physiol Plant 131(1), 2007
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Hideg É, Kós PB, Vass I., Physiol Plant 131(1), 2007
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Photosystem II damage induced by chemically generated singlet oxygen in tobacco leaves.
Hideg E, Kós PB, Vass I., Physiol Plant 131(1), 2007
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The exposed N-terminal tail of the D1 subunit is required for rapid D1 degradation during photosystem II repair in Synechocystis sp PCC 6803.
Komenda J, Tichy M, Prásil O, Knoppová J, Kuviková S, de Vries R, Nixon PJ., Plant Cell 19(9), 2007
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Komenda J, Tichy M, Prásil O, Knoppová J, Kuviková S, de Vries R, Nixon PJ., Plant Cell 19(9), 2007
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Cadmium triggers an integrated reprogramming of the metabolism of Synechocystis PCC6803, under the control of the Slr1738 regulator.
Houot L, Floutier M, Marteyn B, Michaut M, Picciocchi A, Legrain P, Aude JC, Cassier-Chauvat C, Chauvat F., BMC Genomics 8(), 2007
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Membrane proteins from the cyanobacterium Synechocystis sp. PCC 6803 interacting with thioredoxin.
Mata-Cabana A, Florencio FJ, Lindahl M., Proteomics 7(21), 2007
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Mobilization of photosystem II induced by intense red light in the Cyanobacterium Synechococcus sp PCC7942.
Sarcina M, Bouzovitis N, Mullineaux CW., Plant Cell 18(2), 2006
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Protein degradation machineries in plastids.
Sakamoto W., Annu Rev Plant Biol 57(), 2006
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Glycinebetaine counteracts the inhibitory effects of salt stress on the degradation and synthesis of D1 protein during photoinhibition in Synechococcus sp. PCC 7942.
Ohnishi N, Murata N., Plant Physiol 141(2), 2006
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Ohnishi N, Murata N., Plant Physiol 141(2), 2006
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Quality control of photosystem II. Cleavage of reaction center D1 protein in spinach thylakoids by FtsH protease under moderate heat stress.
Yoshioka M, Uchida S, Mori H, Komayama K, Ohira S, Morita N, Nakanishi T, Yamamoto Y., J Biol Chem 281(31), 2006
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Yoshioka M, Uchida S, Mori H, Komayama K, Ohira S, Morita N, Nakanishi T, Yamamoto Y., J Biol Chem 281(31), 2006
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UVB effects on the photosystem II-D1 protein of phytoplankton and natural phytoplankton communities.
Bouchard JN, Roy S, Campbell DA., Photochem Photobiol 82(4), 2006
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FtsH11 protease plays a critical role in Arabidopsis thermotolerance.
Chen J, Burke JJ, Velten J, Xin Z., Plant J 48(1), 2006
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Chen J, Burke JJ, Velten J, Xin Z., Plant J 48(1), 2006
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Photodamaged D1 protein is degraded in Arabidopsis mutants lacking the Deg2 protease.
Huesgen PF, Schuhmann H, Adamska I., FEBS Lett 580(30), 2006
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García-Lorenzo M, Sjödin A, Jansson S, Funk C., BMC Plant Biol 6(), 2006
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Oxidative stress induced by the photosensitizers neutral red (type I) or rose bengal (type II) in the light causes different molecular responses in Chlamydomonas reinhardtii.
Fischer BB, Krieger-Liszkay A, Eggen RIL., Plant Sci 168(3), 2005
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Quality control of Photosystem II: an FtsH protease plays an essential role in the turnover of the reaction center D1 protein in Synechocystis PCC 6803 under heat stress as well as light stress conditions.
Kamata T, Hiramoto H, Morita N, Shen JR, Mann NH, Yamamoto Y., Photochem Photobiol Sci 4(12), 2005
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Kamata T, Hiramoto H, Morita N, Shen JR, Mann NH, Yamamoto Y., Photochem Photobiol Sci 4(12), 2005
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Degradation of the main Photosystem II light-harvesting complex.
García-Lorenzo M, Zelisko A, Jackowski G, Funk C., Photochem Photobiol Sci 4(12), 2005
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García-Lorenzo M, Zelisko A, Jackowski G, Funk C., Photochem Photobiol Sci 4(12), 2005
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Functional flexibility and acclimation of the thylakoid membrane.
Kanervo E, Suorsa M, Aro EM., Photochem Photobiol Sci 4(12), 2005
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Kanervo E, Suorsa M, Aro EM., Photochem Photobiol Sci 4(12), 2005
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Post-illumination-related loss of photochemical efficiency of Photosystem II and degradation of the D1 protein are temperature-dependent.
Singh M, Yamamoto Y, Satoh K, Aro EM, Kanervo E., J Plant Physiol 162(11), 2005
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Singh M, Yamamoto Y, Satoh K, Aro EM, Kanervo E., J Plant Physiol 162(11), 2005
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Structure, function and assembly of Photosystem II and its light-harvesting proteins.
Minagawa J, Takahashi Y., Photosynth Res 82(3), 2004
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Minagawa J, Takahashi Y., Photosynth Res 82(3), 2004
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Repair machinery of symbiotic photosynthesis as the primary target of heat stress for reef-building corals.
Takahashi S, Nakamura T, Sakamizu M, van Woesik R, Yamasaki H., Plant Cell Physiol 45(2), 2004
PMID: 14988497
Takahashi S, Nakamura T, Sakamizu M, van Woesik R, Yamasaki H., Plant Cell Physiol 45(2), 2004
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Crystal structure of the PsbP protein of photosystem II from Nicotiana tabacum.
Ifuku K, Nakatsu T, Kato H, Sato F., EMBO Rep 5(4), 2004
PMID: 15031714
Ifuku K, Nakatsu T, Kato H, Sato F., EMBO Rep 5(4), 2004
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Consequences of a deletion in dspA on transcript accumulation in Synechocystis sp. strain PCC6803.
Tu CJ, Shrager J, Burnap RL, Postier BL, Grossman AR., J Bacteriol 186(12), 2004
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Tu CJ, Shrager J, Burnap RL, Postier BL, Grossman AR., J Bacteriol 186(12), 2004
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Expression in multigene families. Analysis of chloroplast and mitochondrial proteases.
Sinvany-Villalobo G, Davydov O, Ben-Ari G, Zaltsman A, Raskind A, Adam Z., Plant Physiol 135(3), 2004
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Sinvany-Villalobo G, Davydov O, Ben-Ari G, Zaltsman A, Raskind A, Adam Z., Plant Physiol 135(3), 2004
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Proteome reference maps of vegetative tissues in pea. An investigation of nitrogen mobilization from leaves during seed filling.
Schiltz S, Gallardo K, Huart M, Negroni L, Sommerer N, Burstin J., Plant Physiol 135(4), 2004
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Schiltz S, Gallardo K, Huart M, Negroni L, Sommerer N, Burstin J., Plant Physiol 135(4), 2004
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Mutations in ClpC2/Hsp100 suppress the requirement for FtsH in thylakoid membrane biogenesis.
Park S, Rodermel SR., Proc Natl Acad Sci U S A 101(34), 2004
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Cyanophage infection and photoinhibition in marine cyanobacteria.
Bailey S, Clokie MR, Millard A, Mann NH., Res Microbiol 155(9), 2004
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Bailey S, Clokie MR, Millard A, Mann NH., Res Microbiol 155(9), 2004
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Allelic characterization of the leaf-variegated mutation var2 identifies the conserved amino acid residues of FtsH that are important for ATP hydrolysis and proteolysis.
Sakamoto W, Miura E, Kaji Y, Okuno T, Nishizono M, Ogura T., Plant Mol Biol 56(5), 2004
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GTP bound to chloroplast thylakoid membranes is required for light-induced, multienzyme degradation of the photosystem II D1 protein.
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Identification, characterization, and molecular cloning of a homologue of the bacterial FtsH protease in chloroplasts of higher plants.
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The gene complement for proteolysis in the cyanobacterium Synechocystis sp. PCC 6803 and Arabidopsis thaliana chloroplasts.
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Proteolysis of the phage lambda CII regulatory protein by FtsH (HflB) of Escherichia coli.
Shotland Y, Koby S, Teff D, Mansur N, Oren DA, Tatematsu K, Tomoyasu T, Kessel M, Bukau B, Ogura T, Oppenheim AB., Mol. Microbiol. 24(6), 1997
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Recovery of photosystem II activity in photoinhibited synechocystis cells: light-dependent translation activity is required besides light-independent synthesis of the D1 protein.
Constant S, Eisenberg-Domovitch Y, Ohad I, Kirilovsky D., Biochemistry 39(8), 2000
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Constant S, Eisenberg-Domovitch Y, Ohad I, Kirilovsky D., Biochemistry 39(8), 2000
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DNA microarray analysis of cyanobacterial gene expression during acclimation to high light.
Hihara Y, Kamei A, Kanehisa M, Kaplan A, Ikeuchi M., Plant Cell 13(4), 2001
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Hihara Y, Kamei A, Kanehisa M, Kaplan A, Ikeuchi M., Plant Cell 13(4), 2001
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