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Sphingolipids mediate polar sorting of PIN2 through phosphoinositide consumption at the trans-Golgi network
by
Wattelet-Boyer, Valérie
, Boutté, Yohann
, Fougère, Louise
, Claverol, Stéphane
, Jaillais, Yvon
, Noack, Lise, C
, ANR-11-INBS-0010, METABOHUB,Développement d'une infrastructure française distribuée pour la métabolomique dédiée à l'innovation
, Moreau, Patrick
, Reproduction et développement des plantes (RDP)
, Plateforme Bordeaux Metabolome
, Esnay, Nicolas
, Ito, Yoko
, Platre, Matthieu Pierre
, Fouillen, Laetitia
, Menzel, Wilhelm
, Laboratoire de biogenèse membranaire (LBM)
, École normale supérieure de Lyon (ENS de Lyon)
, ANR-18-CE13-0025, caLIPSO,Mécanismes du pattern lipidique du réseau trans-Golgien (trans-Golgi Network) et rôles dans le tri des protéines, la polarité cellulaire et le développement des plantes
, MetaboHUB-MetaboHUB
in
13/1
/ 14/19
/ 14/34
/ 38/77
/ 631/449/448/2024
/ 631/449/448/2652
/ 631/45/287/1196
/ 631/80/313/1525
/ 82/58
/ 96/35
/ Auxins
/ Cell membranes
/ Chains
/ Consumption
/ Efflux
/ Endoplasmic reticulum
/ Golgi apparatus
/ Homeostasis
/ Humanities and Social Sciences
/ Life Sciences
/ Lipid composition
/ Lipids
/ Mode of action
/ multidisciplinary
/ Organelles
/ Phosphoinositides
/ Phospholipase
/ Phospholipase C
/ Plant cells
/ Protein composition
/ Protein transport
/ Proteins
/ Reduction
/ Science
/ Science (multidisciplinary)
/ Sphingolipids
2021
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Sphingolipids mediate polar sorting of PIN2 through phosphoinositide consumption at the trans-Golgi network
by
Wattelet-Boyer, Valérie
, Boutté, Yohann
, Fougère, Louise
, Claverol, Stéphane
, Jaillais, Yvon
, Noack, Lise, C
, ANR-11-INBS-0010, METABOHUB,Développement d'une infrastructure française distribuée pour la métabolomique dédiée à l'innovation
, Moreau, Patrick
, Reproduction et développement des plantes (RDP)
, Plateforme Bordeaux Metabolome
, Esnay, Nicolas
, Ito, Yoko
, Platre, Matthieu Pierre
, Fouillen, Laetitia
, Menzel, Wilhelm
, Laboratoire de biogenèse membranaire (LBM)
, École normale supérieure de Lyon (ENS de Lyon)
, ANR-18-CE13-0025, caLIPSO,Mécanismes du pattern lipidique du réseau trans-Golgien (trans-Golgi Network) et rôles dans le tri des protéines, la polarité cellulaire et le développement des plantes
, MetaboHUB-MetaboHUB
in
13/1
/ 14/19
/ 14/34
/ 38/77
/ 631/449/448/2024
/ 631/449/448/2652
/ 631/45/287/1196
/ 631/80/313/1525
/ 82/58
/ 96/35
/ Auxins
/ Cell membranes
/ Chains
/ Consumption
/ Efflux
/ Endoplasmic reticulum
/ Golgi apparatus
/ Homeostasis
/ Humanities and Social Sciences
/ Life Sciences
/ Lipid composition
/ Lipids
/ Mode of action
/ multidisciplinary
/ Organelles
/ Phosphoinositides
/ Phospholipase
/ Phospholipase C
/ Plant cells
/ Protein composition
/ Protein transport
/ Proteins
/ Reduction
/ Science
/ Science (multidisciplinary)
/ Sphingolipids
2021
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Sphingolipids mediate polar sorting of PIN2 through phosphoinositide consumption at the trans-Golgi network
by
Wattelet-Boyer, Valérie
, Boutté, Yohann
, Fougère, Louise
, Claverol, Stéphane
, Jaillais, Yvon
, Noack, Lise, C
, ANR-11-INBS-0010, METABOHUB,Développement d'une infrastructure française distribuée pour la métabolomique dédiée à l'innovation
, Moreau, Patrick
, Reproduction et développement des plantes (RDP)
, Plateforme Bordeaux Metabolome
, Esnay, Nicolas
, Ito, Yoko
, Platre, Matthieu Pierre
, Fouillen, Laetitia
, Menzel, Wilhelm
, Laboratoire de biogenèse membranaire (LBM)
, École normale supérieure de Lyon (ENS de Lyon)
, ANR-18-CE13-0025, caLIPSO,Mécanismes du pattern lipidique du réseau trans-Golgien (trans-Golgi Network) et rôles dans le tri des protéines, la polarité cellulaire et le développement des plantes
, MetaboHUB-MetaboHUB
in
13/1
/ 14/19
/ 14/34
/ 38/77
/ 631/449/448/2024
/ 631/449/448/2652
/ 631/45/287/1196
/ 631/80/313/1525
/ 82/58
/ 96/35
/ Auxins
/ Cell membranes
/ Chains
/ Consumption
/ Efflux
/ Endoplasmic reticulum
/ Golgi apparatus
/ Homeostasis
/ Humanities and Social Sciences
/ Life Sciences
/ Lipid composition
/ Lipids
/ Mode of action
/ multidisciplinary
/ Organelles
/ Phosphoinositides
/ Phospholipase
/ Phospholipase C
/ Plant cells
/ Protein composition
/ Protein transport
/ Proteins
/ Reduction
/ Science
/ Science (multidisciplinary)
/ Sphingolipids
2021
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Sphingolipids mediate polar sorting of PIN2 through phosphoinositide consumption at the trans-Golgi network
Journal Article
Sphingolipids mediate polar sorting of PIN2 through phosphoinositide consumption at the trans-Golgi network
2021
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Overview
Abstract The lipid composition of organelles acts as a landmark to define membrane identity and specify subcellular function. Phosphoinositides are anionic lipids acting in protein sorting and trafficking at the trans -Golgi network (TGN). In animal cells, sphingolipids control the turnover of phosphoinositides through lipid exchange mechanisms at endoplasmic reticulum/TGN contact sites. In this study, we discover a mechanism for how sphingolipids mediate phosphoinositide homeostasis at the TGN in plant cells. Using multiple approaches, we show that a reduction of the acyl-chain length of sphingolipids results in an increased level of phosphatidylinositol-4-phosphate (PtdIns(4)P or PI4P) at the TGN but not of other lipids usually coupled to PI4P during exchange mechanisms. We show that sphingolipids mediate Phospholipase C (PLC)-driven consumption of PI4P at the TGN rather than local PI4P synthesis and that this mechanism is involved in the polar sorting of the auxin efflux carrier PIN2 at the TGN. Together, our data identify a mode of action of sphingolipids in lipid interplay at the TGN during protein sorting.
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