Heterocyst-specific flavodiiron protein Flv3B enables oxic diazotrophic growth of the filamentous cyanobacterium Anabaena sp. PCC 7120

dc.contributor.authorErmakova, Maria
dc.contributor.authorBattchikova, Natalia
dc.contributor.authorRichaud, Pierre
dc.contributor.authorLeino, Hannu
dc.contributor.authorKosourov, Sergey
dc.contributor.authorIsojärvi, Janne
dc.contributor.authorPeltier, Gilles
dc.contributor.authorFlores, Enrique
dc.contributor.authorCournac, Laurent
dc.contributor.authorAllahverdiyeva, Yagut
dc.contributor.authorAro, Eva-Mari
dc.date.accessioned2018-11-29T22:53:07Z
dc.date.available2018-11-29T22:53:07Z
dc.date.issued2014
dc.date.updated2018-11-29T07:50:58Z
dc.description.abstractFlavodiiron proteins are known to have crucial and specific roles in photoprotection of photosystems I and II in cyanobacteria. The filamentous, heterocyst-forming cyanobacterium Anabaena sp. strain PCC 7120 contains, besides the four flavodiiron proteins Flv1A, Flv2, Flv3A, and Flv4 present in vegetative cells, two heterocyst-specific flavodiiron proteins, Flv1B and Flv3B. Here, we demonstrate that Flv3B is responsible for light-induced O2 uptake in heterocysts, and that the absence of the Flv3B protein severely compromises the growth of filaments in oxic, but not in microoxic, conditions. It is further demonstrated that Flv3B-mediated photosynthetic O2 uptake has a distinct role in heterocysts which cannot be substituted by respiratory O2 uptake in the protection of nitrogenase from oxidative damage and, thus, in an efficient provision of nitrogen to filaments. In line with this conclusion, the Δflv3B strain has reduced amounts of nitrogenase NifHDK subunits and shows multiple symptoms of nitrogen deficiency in the filaments. The apparent imbalance of cytosolic redox state in Δflv3B heterocysts also has a pronounced influence on the amounts of different transcripts and proteins. Therefore, an O2-related mechanism for control of gene expression is suggested to take place in heterocysts.
dc.format.mimetypeapplication/pdfen_AU
dc.identifier.issn0027-8424
dc.identifier.urihttp://hdl.handle.net/1885/152380
dc.publisherNational Academy of Sciences (USA)
dc.sourcePNAS - Proceedings of the National Academy of Sciences of the United States of America
dc.titleHeterocyst-specific flavodiiron protein Flv3B enables oxic diazotrophic growth of the filamentous cyanobacterium Anabaena sp. PCC 7120
dc.typeJournal article
dcterms.accessRightsOpen Accessen_AU
local.bibliographicCitation.issue30
local.bibliographicCitation.lastpage11210
local.bibliographicCitation.startpage11205
local.contributor.affiliationErmakova, Maria, College of Science, ANU
local.contributor.affiliationBattchikova, Natalia, University of Turku
local.contributor.affiliationRichaud, Pierre, CEA, Institut de Biologie Environnementale et de Biotechnologie
local.contributor.affiliationLeino, Hannu, University of Turku
local.contributor.affiliationKosourov, Sergey, University of Turku
local.contributor.affiliationIsojärvi, Janne, University of Turku
local.contributor.affiliationPeltier, Gilles, Laboratoire de Bioénergétique et Biotechnologie
local.contributor.affiliationFlores, Enrique, Instituto de Bioquímica Vegetal y Fotosíntesis
local.contributor.affiliationCournac, Laurent, Laboratoire de Bioénergétique et Biotechnologie
local.contributor.affiliationAllahverdiyeva, Yagut, University of Turku
local.contributor.affiliationAro, Eva-Mari, University of Turku
local.contributor.authoruidErmakova, Maria, u1016296
local.description.notesImported from ARIES
local.identifier.absfor060702 - Plant Cell and Molecular Biology
local.identifier.absseo970106 - Expanding Knowledge in the Biological Sciences
local.identifier.ariespublicationu4956746xPUB592
local.identifier.citationvolume111
local.identifier.doi10.1073/pnas.1407327111
local.identifier.thomsonID000339500200073
local.type.statusPublished Version

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