Chloroplast lipid droplet type II NAD(P)H quinone oxidoreductase is essential for prenylquinone metabolism and vitamin K^sub 1^ accumulation

Lipid droplets are ubiquitous cellular structures in eukaryotes and are required for lipid metabolism. Little is currently known about plant lipid droplets other than oil bodies. Here, we define dual roles for chloroplast lipid droplets (plastoglobules) in energy and prenylquinone metabolism. The pr...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2011-08, Vol.108 (34), p.14354
Hauptverfasser: Piller, Lucia Eugeni, Besagni, Céline, Ksas, Brigitte, Rumeau, Dominique, Bréhélin, Claire, Glauser, Gaétan, Kessler, Felix, Havaux, Michel
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Sprache:eng
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Zusammenfassung:Lipid droplets are ubiquitous cellular structures in eukaryotes and are required for lipid metabolism. Little is currently known about plant lipid droplets other than oil bodies. Here, we define dual roles for chloroplast lipid droplets (plastoglobules) in energy and prenylquinone metabolism. The prenylquinones-plastoquinone, plastochromanol-8, phylloquinone (vitamin K1), and tocopherol (vitamin E) -- are partly stored in plastoglobules. This work shows that NAD(P)H dehydrogenase C1 (NDC1) (At5g08740), a type II NAD(P)H quinone oxidoreductase, associates with plastoglobules. NDC1 reduces a plastoquinone analog in vitro and affects the overall redox state of the total plastoquinone pool in vivo by reducing the plastoquinone reservoir of plastoglobules. Finally, NDC1 is required for normal plastochromanol-8 accumulation and is essential for vitamin K1 production. [PUBLICATION ABSTRACT]
ISSN:0027-8424
1091-6490