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Phosphatidylglycerol Depletion Induces an Increase in Myxoxanthophyll Biosynthetic Activity in Synechocystis PCC6803 Cells
Author(s) -
Ildikó Domonkos,
Przemysław Malec,
Hajnalka LaczkóDobos,
Özge Sözer,
Kinga Kłodawska,
Hajime Wada,
Kazimierz Strzałka,
Zoltán Gombos
Publication year - 2008
Publication title -
plant and cell physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.975
H-Index - 152
eISSN - 1471-9053
pISSN - 0032-0781
DOI - 10.1093/pcp/pcn204
Subject(s) - synechocystis , chemistry , thylakoid , carotenoid , biochemistry , reactive oxygen species , radical , phosphatidylglycerol , photosynthesis , chloroplast , cytosol , microbiology and biotechnology , mutant , biology , membrane , phospholipid , phosphatidylcholine , gene , enzyme
Phosphatidylglycerol (PG) depletion suppressed the oxygen-evolving activity of Synechocystis PCC6803 pgsA mutant cells. Shortage of PG led to decreased photosynthetic activity, which, similar to the effect of high light exposure, is likely to generate the production of reactive oxygen species (ROS) or free radicals. Protection of the PG-depleted cells against light-induced damage increased the echinenone and myxoxanthophyll content of the cells. The increased carotenoid content was localized in a soluble fraction of the cells as well as in isolated thylakoid and cytoplasmic membranes. The soluble carotenoid fraction contained carotene derivatives, which may bind to proteins. These carotene-protein complexes are similar to orange carotenoid protein that is involved in yielding protection against free radicals and ROS. An increase in the content of myxoxanthophyll and echinenone upon PG depletion suggests that PG depletion regulates the biosynthetic pathway of specific carotenoids.

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