Literature DB >> 30852554

The Cytochrome b 6 f Complex Is Not Involved in Cyanobacterial State Transitions.

Pablo I Calzadilla1, Jiao Zhan1,2, Pierre Sétif1, Claire Lemaire1, Daniel Solymosi3, Natalia Battchikova3, Qiang Wang2,4, Diana Kirilovsky5.   

Abstract

Photosynthetic organisms must sense and respond to fluctuating environmental conditions in order to perform efficient photosynthesis and to avoid the formation of dangerous reactive oxygen species. The excitation energy arriving at each photosystem permanently changes due to variations in the intensity and spectral properties of the absorbed light. Cyanobacteria, like plants and algae, have developed a mechanism, named "state transitions," that balances photosystem activities. Here, we characterize the role of the cytochrome b 6 f complex and phosphorylation reactions in cyanobacterial state transitions using Synechococcus elongatus PCC 7942 and Synechocystis PCC 6803 as model organisms. First, large photosystem II (PSII) fluorescence quenching was observed in State II, a result that does not appear to be related to energy transfer from PSII to PSI (spillover). This membrane-associated process was inhibited by betaine, Suc, and high concentrations of phosphate. Then, using different chemicals affecting the plastoquinone pool redox state and cytochrome b 6 f activity, we demonstrate that this complex is not involved in state transitions in S. elongatus or Synechocystis PCC6803. Finally, by constructing and characterizing 21 protein kinase and phosphatase mutants and using chemical inhibitors, we demonstrate that phosphorylation reactions are not essential for cyanobacterial state transitions. Thus, signal transduction is completely different in cyanobacterial and plant (green alga) state transitions.
© 2019 American Society of Plant Biologists. All rights reserved.

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Year:  2019        PMID: 30852554      PMCID: PMC6501608          DOI: 10.1105/tpc.18.00916

Source DB:  PubMed          Journal:  Plant Cell        ISSN: 1040-4651            Impact factor:   11.277


  79 in total

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2.  Serine/threonine protein kinase SpkA in Synechocystis sp. strain PCC 6803 is a regulator of expression of three putative pilA operons, formation of thick pili, and cell motility.

Authors:  Vladimir B Panichkin; Satoko Arakawa-Kobayashi; Toku Kanaseki; Iwane Suzuki; Dmitry A Los; Sergey V Shestakov; Norio Murata
Journal:  J Bacteriol       Date:  2006-08-17       Impact factor: 3.490

3.  Crystal structure of oxygen-evolving photosystem II at a resolution of 1.9 Å.

Authors:  Yasufumi Umena; Keisuke Kawakami; Jian-Ren Shen; Nobuo Kamiya
Journal:  Nature       Date:  2011-04-17       Impact factor: 49.962

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Journal:  Photosynth Res       Date:  1992-04       Impact factor: 3.573

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6.  Improved Phos-tag SDS-PAGE under neutral pH conditions for advanced protein phosphorylation profiling.

Authors:  Eiji Kinoshita; Emiko Kinoshita-Kikuta
Journal:  Proteomics       Date:  2010-12-14       Impact factor: 3.984

7.  The redox state of plastoquinone pool regulates state transitions via cytochrome b6f complex in Synechocystis sp. PCC 6803.

Authors:  Hai Bin Mao; Guo Fu Li; Xiang Ruan; Qing Yu Wu; Yan Dao Gong; Xiu Fang Zhang; Nan Ming Zhao
Journal:  FEBS Lett       Date:  2002-05-22       Impact factor: 4.124

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Journal:  Microbiol Mol Biol Rev       Date:  1998-09       Impact factor: 11.056

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2.  Shedding New Light on the Ancient Process of Photosynthesis in Cyanobacteria.

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Review 7.  A New Light on Photosystem II Maintenance in Oxygenic Photosynthesis.

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9.  State transitions and photosystems spatially resolved in individual cells of the cyanobacterium Synechococcus elongatus.

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Journal:  Plant Physiol       Date:  2021-05-27       Impact factor: 8.340

10.  Depletion of m-type thioredoxin impairs photosynthesis, carbon fixation, and oxidative stress in cyanobacteria.

Authors:  Manuel J Mallén-Ponce; María José Huertas; Ana María Sánchez-Riego; Francisco J Florencio
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