Reconstitution of ORP-mediated lipid exchange process coupled to PI(4)P metabolism
- Others:
- Institut de pharmacologie moléculaire et cellulaire (IPMC) ; Université Nice Sophia Antipolis (1965 - 2019) (UNS)-Centre National de la Recherche Scientifique (CNRS)-Université Côte d'Azur (UCA)
- Ce travail a été soutenu par une bourse " Défi Modélisation du vivant-2019 " du CNRS et des bourses " ANR-16-CE13-0006 " et " ANR-15-IDEX-0 " de l'Agence nationale de la recherche. A.S. reconnaît le soutien du Conseil européen de la recherche (ERC) dans le cadre du programme de recherche et d'innovation Horizon 2020 de l'Union européenne (accord de subvention n° 101002724 RIDING), de l'Office de la recherche scientifique de l'armée de l'air sous le numéro FA8655-20-1-7028, et des National Institutes of Health (NIH) sous le numéro R01DC018789.
- ANR-16-CE13-0006,ExCHANGE,DECHIFFRER DE NOUVEAUX MECANISMES D'ECHANGE DE LIPIDES QUI CONTROLENT LA DISTRIBUTION DES LIPIDES DANS LA CELLULEDANS LA CELLULE(2016)
Description
Lipid distribution in the eukaryotic cells depends on tight couplings between lipid transfer and lipid metabolism. Yet these couplings remain poorly described. Notably, it is unclear to what extent lipid exchangers of the OSBP-related proteins (ORPs) family, coupled to PI(4)P metabolism, contribute to the formation of sterol and phosphatidylserine gradient between the endoplasmic reticulum (ER) and other cell regions. To address this question, we have examined in vitro the activity of Osh4p, a representative ORP, between Golgi mimetic membranes in which PI(4)P is produced by a PI 4-kinase and ER mimetic membranes in which PI(4)P is hydrolyzed by the phosphatase Sac1p. Using quantitative, real-time assays, we demonstrate that Osh4p creates a sterol gradient between the two membranes by sterol/PI(4)P exchange as soon as a PI(4)P gradient is generated at this interface following ATP addition, and define how much PI(4)P must be synthesized for this process. Then, using a kinetic model supported by our in vitro data, we estimate to what extent PI(4)P metabolism can drive lipid transfer in cells. Finally, we show that Sec14p, by transferring phosphatidylinositol between membranes, can support the synthesis of PI(4)P and the creation of a sterol gradient by Osh4p. These results indicate to what extent ORPs, under the control of PI(4)P metabolism, can distribute lipids in the cell.
Additional details
- URL
- https://hal.science/hal-04283389
- URN
- urn:oai:HAL:hal-04283389v1
- Origin repository
- UNICA