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Structure of Psb29/Thf1 and its association with the FtsH protease complex involved in photosystem II repair in cyanobacteria

One strategy for enhancing photosynthesis in crop plants is to improve their ability to repair photosystem II (PSII) in response to irreversible damage by light. Despite the pivotal role of thylakoid-embedded FtsH protease complexes in the selective degradation of PSII subunits during repair, little...

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Autores principales: Bec̆ková, Martina, Yu, Jianfeng, Krynická, Vendula, Kozlo, Amanda, Shao, Shengxi, Koník, Peter, Komenda, Josef, Murray, James W., Nixon, Peter J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5566888/
https://www.ncbi.nlm.nih.gov/pubmed/28808107
http://dx.doi.org/10.1098/rstb.2016.0394
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author Bec̆ková, Martina
Yu, Jianfeng
Krynická, Vendula
Kozlo, Amanda
Shao, Shengxi
Koník, Peter
Komenda, Josef
Murray, James W.
Nixon, Peter J.
author_facet Bec̆ková, Martina
Yu, Jianfeng
Krynická, Vendula
Kozlo, Amanda
Shao, Shengxi
Koník, Peter
Komenda, Josef
Murray, James W.
Nixon, Peter J.
author_sort Bec̆ková, Martina
collection PubMed
description One strategy for enhancing photosynthesis in crop plants is to improve their ability to repair photosystem II (PSII) in response to irreversible damage by light. Despite the pivotal role of thylakoid-embedded FtsH protease complexes in the selective degradation of PSII subunits during repair, little is known about the factors involved in regulating FtsH expression. Here we show using the cyanobacterium Synechocystis sp. PCC 6803 that the Psb29 subunit, originally identified as a minor component of His-tagged PSII preparations, physically interacts with FtsH complexes in vivo and is required for normal accumulation of the FtsH2/FtsH3 hetero-oligomeric complex involved in PSII repair. We show using X-ray crystallography that Psb29 from Thermosynechococcus elongatus has a unique fold consisting of a helical bundle and an extended C-terminal helix and contains a highly conserved region that might be involved in binding to FtsH. A similar interaction is likely to occur in Arabidopsis chloroplasts between the Psb29 homologue, termed THF1, and the FTSH2/FTSH5 complex. The direct involvement of Psb29/THF1 in FtsH accumulation helps explain why THF1 is a target during the hypersensitive response in plants induced by pathogen infection. Downregulating FtsH function and the PSII repair cycle via THF1 would contribute to the production of reactive oxygen species, the loss of chloroplast function and cell death. This article is part of the themed issue ‘Enhancing photosynthesis in crop plants: targets for improvement’.
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spelling pubmed-55668882017-08-27 Structure of Psb29/Thf1 and its association with the FtsH protease complex involved in photosystem II repair in cyanobacteria Bec̆ková, Martina Yu, Jianfeng Krynická, Vendula Kozlo, Amanda Shao, Shengxi Koník, Peter Komenda, Josef Murray, James W. Nixon, Peter J. Philos Trans R Soc Lond B Biol Sci Articles One strategy for enhancing photosynthesis in crop plants is to improve their ability to repair photosystem II (PSII) in response to irreversible damage by light. Despite the pivotal role of thylakoid-embedded FtsH protease complexes in the selective degradation of PSII subunits during repair, little is known about the factors involved in regulating FtsH expression. Here we show using the cyanobacterium Synechocystis sp. PCC 6803 that the Psb29 subunit, originally identified as a minor component of His-tagged PSII preparations, physically interacts with FtsH complexes in vivo and is required for normal accumulation of the FtsH2/FtsH3 hetero-oligomeric complex involved in PSII repair. We show using X-ray crystallography that Psb29 from Thermosynechococcus elongatus has a unique fold consisting of a helical bundle and an extended C-terminal helix and contains a highly conserved region that might be involved in binding to FtsH. A similar interaction is likely to occur in Arabidopsis chloroplasts between the Psb29 homologue, termed THF1, and the FTSH2/FTSH5 complex. The direct involvement of Psb29/THF1 in FtsH accumulation helps explain why THF1 is a target during the hypersensitive response in plants induced by pathogen infection. Downregulating FtsH function and the PSII repair cycle via THF1 would contribute to the production of reactive oxygen species, the loss of chloroplast function and cell death. This article is part of the themed issue ‘Enhancing photosynthesis in crop plants: targets for improvement’. The Royal Society 2017-09-26 2017-08-14 /pmc/articles/PMC5566888/ /pubmed/28808107 http://dx.doi.org/10.1098/rstb.2016.0394 Text en © 2017 The Authors. http://creativecommons.org/licenses/by/4.0/ Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Articles
Bec̆ková, Martina
Yu, Jianfeng
Krynická, Vendula
Kozlo, Amanda
Shao, Shengxi
Koník, Peter
Komenda, Josef
Murray, James W.
Nixon, Peter J.
Structure of Psb29/Thf1 and its association with the FtsH protease complex involved in photosystem II repair in cyanobacteria
title Structure of Psb29/Thf1 and its association with the FtsH protease complex involved in photosystem II repair in cyanobacteria
title_full Structure of Psb29/Thf1 and its association with the FtsH protease complex involved in photosystem II repair in cyanobacteria
title_fullStr Structure of Psb29/Thf1 and its association with the FtsH protease complex involved in photosystem II repair in cyanobacteria
title_full_unstemmed Structure of Psb29/Thf1 and its association with the FtsH protease complex involved in photosystem II repair in cyanobacteria
title_short Structure of Psb29/Thf1 and its association with the FtsH protease complex involved in photosystem II repair in cyanobacteria
title_sort structure of psb29/thf1 and its association with the ftsh protease complex involved in photosystem ii repair in cyanobacteria
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5566888/
https://www.ncbi.nlm.nih.gov/pubmed/28808107
http://dx.doi.org/10.1098/rstb.2016.0394
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