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Involvement of protein phosphorylation in the sensitivity of photosystem II to strong illumination
Authors:Maria T. Giardi  Josef Komenda  Jiri Masojidek
Affiliation:Institute of Plant Biochemistry and Ecophysiology (IREV-CNR), via Salaria Km. 29.i. 1–00016 Monterotondo Scalo, Rome, Italy;Depl of Autotrophic Microorganisms, Institute of Microbiology, Czech Academy of Sciences, 37981 Trebon, Czech Republic.
Abstract:Four types of differently phosphorylated hylakoids isolated from field grown spinach ( Spinacia oleracea L.) were tested for the sensitivity of photosystem II (PSII) to photoinactivation. Phosphorylation of light-harvesting II complexes (LHCII) protected PSII electron transfer from photoinhibitory damage, while the phosphorylation of the PSII core polypeptides slightly accelerated the decline of electron transfer during high irradiance treatment. Dephosphorylation of the CP43 apoprotein and PsbH protein by an alkaline phosphatase resulted in an extreme sensitivity of the thylakoids to strong illumination. The PSII photoinactivation of thylakoids with the impaired oxygen-evolving complex was found to be independent of phosphorylation.
The thylakoids of the thermophilic cyanobacterium Synechococcus elongates were used in order to compare the plants with an organism where LHCII complexes are missing and the PSII core proteins are not phosphorylated.
Keywords:Phosphorylation    photoinactivation    photosystem II    PsbH protein    spinach    Spnacia oleracea
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