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dc.rights.licenseopenen_US
hal.structure.identifierLaboratoire de biogenèse membranaire [LBM]
dc.contributor.authorITO, Yoko
hal.structure.identifierLaboratoire de biogenèse membranaire [LBM]
dc.contributor.authorESNAY, Nicolas
hal.structure.identifierLaboratoire de biogenèse membranaire [LBM]
dc.contributor.authorFOUGERE, Louise
dc.contributor.authorPLATRE, Matthieu Pierre
dc.contributor.authorCORDELIERES, Fabrice
dc.contributor.authorJAILLAIS, Yvon
hal.structure.identifierLaboratoire de biogenèse membranaire [LBM]
dc.contributor.authorBOUTTE, Yohann
dc.date.accessioned2022-03-09T16:59:55Z
dc.date.available2022-03-09T16:59:55Z
dc.date.issued2021
dc.identifier.issn16616596en_US
dc.identifier.urihttps://oskar-bordeaux.fr/handle/20.500.12278/136411
dc.description.abstractEnA main characteristic of sphingolipids is the presence of a very long chain fatty acid (VLCFA) whose function in cellular processes is not yet fully understood. VLCFAs of sphingolipids are involved in the intracellular traffic to the vacuole and the maturation of early endosomes into late endosomes is one of the major pathways for vacuolar traffic. Additionally, the anionic phospholipid phosphatidylinositol-3-phosphate (PtdIns (3)P or PI3P) is involved in protein sorting and recruitment of small GTPase effectors at late endosomes/multivesicular bodies (MVBs) during vacuolar trafficking. In contrast to animal cells, PI3P mainly localizes to late endosomes in plant cells and to a minor extent to a discrete sub-domain of the plant’s early endosome (EE)/trans-Golgi network (TGN) where the endosomal maturation occurs. However, the mechanisms that control the relative levels of PI3P between TGN and MVBs are unknown. Using metazachlor, an inhibitor of VLCFA synthesis, we found that VLCFAs are involved in the TGN/MVB distribution of PI3P. This effect is independent from either synthesis of PI3P by PI3-kinase or degradation of PI(3,5)P2 into PI3P by the SUPPRESSOR OF ACTIN1 (SAC1) phosphatase. Using high-resolution live cell imaging microscopy, we detected transient associations between TGNs and MVBs but VLCFAs are not involved in those interactions. Nonetheless, our results suggest that PI3P might be transferable from TGN to MVBs and that VLCFAs act in this process.
dc.language.isoENen_US
dc.rightsAttribution 3.0 United States*
dc.rights.urihttp://creativecommons.org/licenses/by/3.0/us/*
dc.subject.enVacuole
dc.subject.enMultivesicular bodies
dc.subject.enEndosomes
dc.subject.entrans-Golgi network
dc.subject.enphosphatidylinositol-3-phosphate
dc.subject.envery-long chain fatty acids
dc.title.enInhibition of very long chain fatty acids synthesis mediates pi3p homeostasis at endosomal compartments
dc.typeArticle de revueen_US
dc.identifier.doi10.3390/ijms22168450en_US
dc.subject.halSciences du Vivant [q-bio]/Biochimie, Biologie Moléculaireen_US
dc.identifier.pubmed34445155en_US
bordeaux.journalInternational Journal of Molecular Sciencesen_US
bordeaux.volume22en_US
bordeaux.hal.laboratoriesLaboratoire de Biogenèse Membranaire (LBM) - UMR 5200en_US
bordeaux.issue16en_US
bordeaux.institutionUniversité de Bordeauxen_US
bordeaux.institutionCNRSen_US
bordeaux.peerReviewedouien_US
bordeaux.inpressnonen_US
bordeaux.identifier.funderIDMinistère de l'Enseignement supérieur, de la Recherche et de l'Innovationen_US
bordeaux.identifier.funderIDAgence Nationale de la Rechercheen_US
hal.exportfalse
dc.rights.ccCC BYen_US
bordeaux.COinSctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=International%20Journal%20of%20Molecular%20Sciences&rft.date=2021&rft.volume=22&rft.issue=16&rft.eissn=16616596&rft.issn=16616596&rft.au=ITO,%20Yoko&ESNAY,%20Nicolas&FOUGERE,%20Louise&PLATRE,%20Matthieu%20Pierre&CORDELIERES,%20Fabrice&rft.genre=article


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