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dc.rights.licenseopenen_US
hal.structure.identifierInstitut Européen de Chimie et Biologie [IECB]
dc.contributor.authorMECA, Julien
hal.structure.identifierInstitut Européen de Chimie et Biologie [IECB]
dc.contributor.authorMASSONI‐LAPORTE, Aurélie
dc.contributor.authorMARTINEZ, Denis
dc.contributor.authorSARTOREL, Elodie
dc.contributor.authorLOQUET, Antoine
dc.contributor.authorHABENSTEIN, Birgit
hal.structure.identifierInstitut Européen de Chimie et Biologie [IECB]
dc.contributor.authorMCCUSKER, Derek
dc.date.accessioned2019
dc.date.available2019
dc.date.issued2019
dc.identifier.issn1460-2075en_US
dc.identifier.urihttps://oskar-bordeaux.fr/handle/20.500.12278/3807
dc.description.abstractWhile Rho GTPases are indispensible regulators of cellular polarity, the mechanisms underlying their anisotropic activation at membranes have been elusive. Using the budding yeast Cdc42 GTPase module, which includes a guanine nucleotide exchange factor (GEF) Cdc24 and the scaffold Bem1, we find that avidity generated via multivalent anionic lipid interactions is a critical mechanistic constituent of polarity establishment. We identify basic cluster (BC) motifs in Bem1 that drive the interaction of the scaffold–GEF complex with anionic lipids at the cell pole. This interaction appears to influence lipid acyl chain ordering, thus regulating membrane rigidity and feedback between Cdc42 and the membrane environment. Sequential mutation of the Bem1 BC motifs, PX domain, and the PH domain of Cdc24 lead to a progressive loss of cellular polarity stemming from defective Cdc42 nanoclustering on the plasma membrane and perturbed signaling. Our work demonstrates the importance of avidity via multivalent anionic lipid interactions in the spatial control of GTPase activation.
dc.language.isoENen_US
dc.subject.encell polarity
dc.subject.enLipids
dc.subject.ennanoclustering
dc.title.enAvidity-driven polarity establishment via multivalent lipid-GTPase module interactions.
dc.typeArticle de revueen_US
dc.subject.halSciences de l'ingénieur [physics]/Matériauxen_US
bordeaux.journalThe EMBO Journalen_US
bordeaux.volume38en_US
bordeaux.hal.laboratoriesInstitut de Chimie & de Biologie des Membranes & des Nano-objets (CBMN) - UMR 5248
bordeaux.issue3en_US
bordeaux.institutionBordeaux INPen_US
bordeaux.institutionUniversité de Bordeauxen_US
bordeaux.peerReviewedouien_US
bordeaux.inpressnonen_US
hal.identifierhal-03181444
hal.version1
hal.date.transferred2021-03-26T02:44:43Z
hal.exporttrue
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