Arabidopsis D6PK is a lipid domain-dependent mediator of root epidermal planar polarity

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Arabidopsis D6PK is a lipid domain-dependent mediator of root epidermal planar polarity is …
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scholarly articleQ13442814

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P6179Dimensions Publication ID1017369225
P356DOI10.1038/NPLANTS.2015.162
P698PubMed publication ID27251533
P5875ResearchGate publication ID283578545

P50authorClaus SchwechheimerQ37372201
Inês C R BarbosaQ42324000
Markus GrebeQ43107592
P2093author name stringKlaus Brackmann
Anna Gustavsson
Christian S Kiefer
Stefano Pietra
Melina Zourelidou
Anke Hüser
Thomas Stanislas
P2860cites workThe exocyst at the interface between cytoskeleton and membranes in eukaryotic cellsQ26859795
Arabidopsis thaliana Rop GTPases are localized to tips of root hairs and control polar growthQ28366139
Lipid rafts as a membrane-organizing principleQ29615727
The nuts and bolts of AGC protein kinasesQ29617465
Bipolar Plasma Membrane Distribution of Phosphoinositides and Their Requirement for Auxin-Mediated Cell Polarity and Patterning in ArabidopsisQ30317420
Arabidopsis dynamin-related proteins DRP2B and DRP1A participate together in clathrin-coated vesicle formation during endocytosis.Q30494008
Arabidopsis  SABRE and CLASP interact to stabilize cell division plane orientation and planar polarity.Q30560119
Lipid rafts in higher plant cells: purification and characterization of Triton X-100-insoluble microdomains from tobacco plasma membraneQ33203659
Cell polarity and PIN protein positioning in Arabidopsis require STEROL METHYLTRANSFERASE1 functionQ33338156
A ROP GTPase signaling pathway controls cortical microtubule ordering and cell expansion in ArabidopsisQ33347980
Fluorescent in situ visualization of sterols in Arabidopsis roots.Q33848893
Auxin efflux by PIN-FORMED proteins is activated by two different protein kinases, D6 PROTEIN KINASE and PINOIDQ33878763
PAMP (pathogen-associated molecular pattern)-induced changes in plasma membrane compartmentalization reveal novel components of plant immunityQ34386041
High lipid order of Arabidopsis cell-plate membranes mediated by sterol and DYNAMIN-RELATED PROTEIN1A function.Q34795042
Arabidopsis AIP1-2 restricted by WER-mediated patterning modulates planar polarity.Q34985201
Phospholipid-based signaling in plantsQ35540304
A role for the RabA4b effector protein PI-4Kbeta1 in polarized expansion of root hair cells in Arabidopsis thaliana.Q36117296
Rac homologues and compartmentalized phosphatidylinositol 4, 5-bisphosphate act in a common pathway to regulate polar pollen tube growth.Q36256463
Heterogeneity and lateral compartmentalization of plant plasma membranesQ37261834
Planar polarity, tissue polarity and planar morphogenesis in plantsQ38036040
D6 PROTEIN KINASE activates auxin transport-dependent growth and PIN-FORMED phosphorylation at the plasma membraneQ38892853
Identification of the Arabidopsis dry2/sqe1-5 mutant reveals a central role for sterols in drought tolerance and regulation of reactive oxygen speciesQ39365271
The Arabidopsis Rop2 GTPase is a positive regulator of both root hair initiation and tip growthQ40644952
The polarly localized D6 PROTEIN KINASE is required for efficient auxin transport in Arabidopsis thalianaQ42448369
Dissection of Arabidopsis ADP-RIBOSYLATION FACTOR 1 function in epidermal cell polarityQ42473128
Vectorial information for Arabidopsis planar polarity is mediated by combined AUX1, EIN2, and GNOM activityQ42503746
Cell polarity signaling in Arabidopsis involves a BFA-sensitive auxin influx pathwayQ42517881
Structural Sterols Are Involved in Both the Initiation and Tip Growth of Root Hairs inArabidopsis thalianaQ42907387
RETRACTED: Activation status-coupled transient S acylation determines membrane partitioning of a plant Rho-related GTPaseQ42924833
D6PK AGCVIII kinases are required for auxin transport and phototropic hypocotyl bending in ArabidopsisQ43551379
Phosphatidylinositol 4,5-bisphosphate influences PIN polarization by controlling clathrin-mediated membrane trafficking in ArabidopsisQ43584879
Sphingolipids containing very-long-chain fatty acids define a secretory pathway for specific polar plasma membrane protein targeting in ArabidopsisQ43786681
Arabidopsis sterol endocytosis involves actin-mediated trafficking via ARA6-positive early endosomesQ44558575
Clathrin mediates endocytosis and polar distribution of PIN auxin transporters in Arabidopsis.Q45124923
Remorin, a solanaceae protein resident in membrane rafts and plasmodesmata, impairs potato virus X movementQ45384207
ABCB19/PGP19 stabilises PIN1 in membrane microdomains in Arabidopsis.Q46386005
Arabidopsis dynamin-like protein DRP1A: a null mutant with widespread defects in endocytosis, cellulose synthesis, cytokinesis, and cell expansion.Q46767905
Local auxin biosynthesis modulates gradient-directed planar polarity in ArabidopsisQ47781958
Sterol-dependent endocytosis mediates post-cytokinetic acquisition of PIN2 auxin efflux carrier polarity.Q48075309
hydra Mutants of Arabidopsis are defective in sterol profiles and auxin and ethylene signalingQ48618374
Cell plate restricted association of DRP1A and PIN proteins is required for cell polarity establishment in ArabidopsisQ49057438
Dynamics of Arabidopsis dynamin-related protein 1C and a clathrin light chain at the plasma membrane.Q50633900
Comparison of the dynamics and functional redundancy of the Arabidopsis dynamin-related isoforms DRP1A and DRP1C during plant development.Q50642632
Clathrin-mediated constitutive endocytosis of PIN auxin efflux carriers in Arabidopsis.Q50696765
Clathrin light chains regulate clathrin-mediated trafficking, auxin signaling, and development in Arabidopsis.Q50758734
The Arabidopsis dynamin-related protein2 family is essential for gametophyte development.Q51536739
Root hair defective4 encodes a phosphatidylinositol-4-phosphate phosphatase required for proper root hair development in Arabidopsis thaliana.Q51963974
The Arabidopsis Phosphatidylinositol Phosphate 5-Kinase PIP5K3 is a key regulator of root hair tip growth.Q51963979
Members of the Arabidopsis dynamin-like gene family, ADL1, are essential for plant cytokinesis and polarized cell growth.Q52107211
Redistribution of actin, profilin and phosphatidylinositol-4, 5-bisphosphate in growing and maturing root hairsQ52536915
The type B phosphatidylinositol-4-phosphate 5-kinase 3 is essential for root hair formation in Arabidopsis thaliana.Q52584413
Analysis of detergent-resistant membranes in Arabidopsis. Evidence for plasma membrane lipid rafts.Q53875953
AGD1, a class 1 ARF-GAP, acts in common signaling pathways with phosphoinositide metabolism and the actin cytoskeleton in controlling Arabidopsis root hair polarityQ82582456
Polyphosphoinositides are enriched in plant membrane rafts and form microdomains in the plasma membraneQ83022672
Alterations in detergent-resistant plasma membrane microdomains in Arabidopsis thaliana during cold acclimationQ83075672
P304page(s)15162
P577publication date2015-11-02
P1433published inNature PlantsQ27726299
P1476titleArabidopsis D6PK is a lipid domain-dependent mediator of root epidermal planar polarity
P478volume1

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cites work (P2860)
Q57167425Arabidopsis protein kinase D6PKL3 is involved in formation of distinct plasma-membrane aperture domains on the pollen surface
Q48101170Auxin and ROP GTPase Signaling of Polar Nuclear Migration in Root Epidermal Hair Cells
Q39029554Cell polarity in plants: the Yin and Yang of cellular functions
Q89346249Cell polarity: compassing cell division and differentiation in plants
Q64254459Ethylene and hydrogen peroxide regulate formation of a sterol-enriched domain essential for wall labyrinth assembly in transfer cells
Q38892847Phospholipid composition and a polybasic motif determine D6 PROTEIN KINASE polar association with the plasma membrane and tropic responses.
Q47814681Pollen Aperture Factor INP1 Acts Late in Aperture Formation by Excluding Specific Membrane Domains from Exine Deposition.
Q48279605ROP GTPases Structure-Function and Signaling Pathways.
Q26744767Regulation of polar auxin transport by protein and lipid kinases
Q64106930Rho-of-plant activated root hair formation requires gene function
Q90198761Specific Recruitment of Phosphoinositide Species to the Plant-Pathogen Interfacial Membrane Underlies Arabidopsis Susceptibility to Fungal Infection

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