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Chemical inhibitors of monogalactosyldiacylglycerol synthases in Arabidopsis thaliana

  作者 BOTTE CYRILLE Y; DELIGNY MICHAEL; ROCCIA AYMERIC; BONNEAU ANNELAURE; SAIDANI NADIA; HARDRE HELENE; ACI SAMIA; YAMARYOBOTTE YOSHIKI; JOUHET JULIETTE; DUBOTS EMMANUELLE; LOIZEAU KAREN; BASTIEN OLIVIER; BREHELIN LAURENT; JOYARD JACQUES; CINTRAT JEANCHRISTOPHE; FALCONET DENIS; BLOCK MARYSE A; ROUSSEAU BERNARD; LOPEZ ROMAN; MARECHAL ERIC  
  选自 期刊  NATURE CHEMICAL BIOLOGY;  卷期  2011年7-11;  页码  834-842  
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[摘要]Monogalactosyldiacylglycerol (MGDG) and digalactosyldiacylglycerol (DGDG) are the main lipids in photosynthetic membranes in plant cells. They are synthesized in the envelope surrounding plastids by MGD and DGD galactosyltransferases. These galacto-lipids are critical for the biogenesis of photosynthetic membranes, and they act as a source of polyunsaturated fatty acids for the whole cell and as phospholipid surrogates in phosphate shortage. Based on a high-throughput chemical screen, we have characterized a new compound, galvestine-1, that inhibits MGDs in vitro by competing with diacylglycerol binding. Consistent effects of galvestine-1 on Arabidopsis thaliana include root uptake, circulation in the xylem and mesophyll, inhibition of MGDs in vivo causing a reduction of MGDG content and impairment of chloroplast development. The effects on pollen germination shed light on the contribution of galactolipids to pollen-tube elongation. The whole-genome transcriptional response of Arabidopsis points to the potential benefits of galvestine-1 as a unique tool to study lipid homeostasis in plants.

 
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