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Specific Interaction between Redox Phospholipid Polymers and Plastoquinone in Photosynthetic Electron Transport Chain
Author(s) -
Tanaka Kenya,
Kaneko Masahiro,
Ishikawa Masahito,
Kato Souichiro,
Ito Hidehiro,
Kamachi Toshiaki,
Kamiya Kazuhide,
Nakanishi Shuji
Publication year - 2017
Publication title -
chemphyschem
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.016
H-Index - 140
eISSN - 1439-7641
pISSN - 1439-4235
DOI - 10.1002/cphc.201700065
Subject(s) - plastoquinone , redox , thylakoid , electron transport chain , chemistry , phospholipid , photosynthesis , membrane , photochemistry , biophysics , chloroplast , biochemistry , biology , inorganic chemistry , gene
Redox phospholipid polymers added in culture media are known to be capable of extracting electrons from living photosynthetic cells across bacterial cell membranes with high cytocompatibility. In the present study, we identify the intracellular redox species that transfers electrons to the polymers. The open‐circuit electrochemical potential of an electrolyte containing the redox polymer and extracted thylakoid membranes shift to positive (or negative) under light irradiation, when an electron transport inhibitor specific to plastoquinone is added upstream (or downstream) in the photosynthetic electron transport chain. The same trend is also observed for a medium containing living photosynthetic cells of Synechococcus elongatus PCC7942. These results clearly indicate that the phospholipid redox polymers extract photosynthetic electrons mainly from plastoquinone.
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