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logo citeas Castell, C., Díaz-Santos, E., Heredia-Martínez, L. G., López-Maury, L., Ortega, J. M., Navarro, J. A., … Hervás, M. (2022, October 12). Iron Deficiency Promotes the Lack of Photosynthetic Cytochrome c550 and Affects the Binding of the Luminal Extrinsic Subunits to Photosystem II in the Diatom Phaeodactylum tricornutum. International Journal of Molecular Sciences. MDPI AG. http://doi.org/10.3390/ijms232012138
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Título

Iron Deficiency Promotes the Lack of Photosynthetic Cytochrome c550 and Affects the Binding of the Luminal Extrinsic Subunits to Photosystem II in the Diatom Phaeodactylum tricornutum

AutorCastell, Carmen; Díaz-Santos, Encarnación; Heredia-Martínez, Luis G.; López-Maury, Luis CSIC ORCID ; Ortega, José M. CSIC ORCID ; Navarro, José A. ; Roncel, Mercedes; Hervás, Manuel CSIC ORCID
FinanciadoresMinisterio de Economía, Industria y Competitividad (España)
European Commission
Universidad de Sevilla
Junta de Andalucía
Ministerio de Educación, Cultura y Deporte (España)
Palabras clavePulse-amplitude modulation chlorophyll fluorescence
Phaeodactylum tricornutum
PsbV
Cytochrome c550
Electron transfer
Iron limitation
Photosystem II
Thermoluminescence
Fecha de publicación12-oct-2022
EditorMultidisciplinary Digital Publishing Institute
CitaciónInternational Journal of Molecular Sciences 23(20): 12138 (2022)
ResumenIn the diatom Phaeodactylum tricornutum, iron limitation promotes a decrease in the content of photosystem II, as determined by measurements of oxygen-evolving activity, thermoluminescence, chlorophyll fluorescence analyses and protein quantification methods. Thermoluminescence experiments also indicate that iron limitation induces subtle changes in the energetics of the recombination reaction between reduced QB and the S2/S3 states of the water-splitting machinery. However, electron transfer from QA to QB, involving non-heme iron, seems not to be significantly inhibited. Moreover, iron deficiency promotes a severe decrease in the content of the extrinsic PsbV/cytochrome c550 subunit of photosystem II, which appears in eukaryotic algae from the red photosynthetic lineage (including diatoms) but is absent in green algae and plants. The decline in the content of cytochrome c550 under iron-limiting conditions is accompanied by a decrease in the binding of this protein to photosystem II, and also of the extrinsic PsbO subunit. We propose that the lack of cytochrome c550, induced by iron deficiency, specifically affects the binding of other extrinsic subunits of photosystem II, as previously described in cyanobacterial PsbV mutants.
Versión del editorhttps://doi.org/10.3390/ijms232012138
URIhttp://hdl.handle.net/10261/352271
DOI10.3390/ijms232012138
ISSN1661-6596
E-ISSN1422-0067
Licencia de usohttps://creativecommons.org/licenses/by/4.0/
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