Vesicle trafficking from a lipid perspective: Lipid regulation of exocytosis in Saccharomyces cerevisiae.

PubWeight™: 0.79‹?›

🔗 View Article (PMID 23181198)

Published in Cell Logist on July 01, 2012

Authors

Jesper Johansen1, Vidhya Ramanathan, Christopher T Beh

Author Affiliations

1: Department of Molecular Biology and Biochemistry; Simon Fraser University; Burnaby, BC Canada.

Articles cited by this

Elastic properties of lipid bilayers: theory and possible experiments. Z Naturforsch C (1974) 19.89

Membrane lipids: where they are and how they behave. Nat Rev Mol Cell Biol (2008) 13.77

Lipid rafts as a membrane-organizing principle. Science (2010) 13.48

Biological membranes as bilayer couples. A molecular mechanism of drug-erythrocyte interactions. Proc Natl Acad Sci U S A (1974) 7.95

The Ras superfamily at a glance. J Cell Sci (2005) 4.83

Lipid rafts function in biosynthetic delivery of proteins to the cell surface in yeast. Proc Natl Acad Sci U S A (2000) 4.14

GDIs: central regulatory molecules in Rho GTPase activation. Trends Cell Biol (2005) 4.13

Structural mechanism for sterol sensing and transport by OSBP-related proteins. Nature (2005) 3.22

Eisosomes mark static sites of endocytosis. Nature (2006) 2.95

Parallel secretory pathways to the cell surface in yeast. J Cell Biol (1995) 2.92

Genome-wide analysis of membrane targeting by S. cerevisiae pleckstrin homology domains. Mol Cell (2004) 2.83

Essential role for diacylglycerol in protein transport from the yeast Golgi complex. Nature (1997) 2.79

Direct involvement of phosphatidylinositol 4-phosphate in secretion in the yeast Saccharomyces cerevisiae. J Biol Chem (1999) 2.72

Osh proteins regulate phosphoinositide metabolism at ER-plasma membrane contact sites. Cell (2011) 2.60

A primer on vesicle budding. Cell (1999) 2.58

Mutations in the SAC1 gene suppress defects in yeast Golgi and yeast actin function. J Cell Biol (1989) 2.49

Stt4 PI 4-kinase localizes to the plasma membrane and functions in the Pkc1-mediated MAP kinase cascade. Dev Cell (2002) 2.48

Segregation of sphingolipids and sterols during formation of secretory vesicles at the trans-Golgi network. J Cell Biol (2009) 2.38

Plasma membrane proton ATPase Pma1p requires raft association for surface delivery in yeast. Mol Biol Cell (2001) 2.27

TORC2 plasma membrane localization is essential for cell viability and restricted to a distinct domain. Mol Biol Cell (2009) 2.23

Visualization of protein compartmentation within the plasma membrane of living yeast cells. Mol Biol Cell (2003) 2.22

Osh4p exchanges sterols for phosphatidylinositol 4-phosphate between lipid bilayers. J Cell Biol (2011) 2.22

Overlapping functions of the yeast oxysterol-binding protein homologues. Genetics (2001) 2.16

Analysis of oxysterol binding protein homologue Kes1p function in regulation of Sec14p-dependent protein transport from the yeast Golgi complex. J Cell Biol (2002) 2.07

Exo70 interacts with phospholipids and mediates the targeting of the exocyst to the plasma membrane. EMBO J (2007) 2.03

GDI1 encodes a GDP dissociation inhibitor that plays an essential role in the yeast secretory pathway. EMBO J (1994) 2.03

Membrane association and functional regulation of Sec3 by phospholipids and Cdc42. J Cell Biol (2008) 1.99

Ergosterol is required for targeting of tryptophan permease to the yeast plasma membrane. J Cell Biol (2003) 1.92

Kes1p shares homology with human oxysterol binding protein and participates in a novel regulatory pathway for yeast Golgi-derived transport vesicle biogenesis. EMBO J (1996) 1.89

Transbilayer phospholipid flipping regulates Cdc42p signaling during polarized cell growth via Rga GTPase-activating proteins. Dev Cell (2007) 1.86

The Cdc42 GTPase-associated proteins Gic1 and Gic2 are required for polarized cell growth in Saccharomyces cerevisiae. Genes Dev (1997) 1.79

Functions and metabolism of sphingolipids in Saccharomyces cerevisiae. Prog Lipid Res (2006) 1.79

Drs2p-dependent formation of exocytic clathrin-coated vesicles in vivo. Curr Biol (2002) 1.75

Dual modes of cdc42 recycling fine-tune polarized morphogenesis. Dev Cell (2009) 1.73

A genome-wide visual screen reveals a role for sphingolipids and ergosterol in cell surface delivery in yeast. Proc Natl Acad Sci U S A (2005) 1.67

Ceramide biosynthesis is required for the formation of the oligomeric H+-ATPase Pma1p in the yeast endoplasmic reticulum. J Biol Chem (2002) 1.67

Dual prenylation is required for Rab protein localization and function. Mol Biol Cell (2003) 1.65

Phospholipase D activity is required for suppression of yeast phosphatidylinositol transfer protein defects. Proc Natl Acad Sci U S A (1998) 1.65

Rapid transbilayer diffusion of 1,2-diacylglycerol and its relevance to control of membrane curvature. Nature (1978) 1.64

Membrane curvature induced by Arf1-GTP is essential for vesicle formation. Proc Natl Acad Sci U S A (2008) 1.63

A role for phospholipase D (Pld1p) in growth, secretion, and regulation of membrane lipid synthesis in yeast. J Biol Chem (1998) 1.61

A genome-wide screen for genes affecting eisosomes reveals Nce102 function in sphingolipid signaling. J Cell Biol (2009) 1.54

The Saccharomyces cerevisiae phosphatidylinositol-transfer protein effects a ligand-dependent inhibition of choline-phosphate cytidylyltransferase activity. Proc Natl Acad Sci U S A (1995) 1.52

Phosphatidylinositol 4-phosphate controls both membrane recruitment and a regulatory switch of the Rab GEF Sec2p. Dev Cell (2010) 1.52

Myosin V transports secretory vesicles via a Rab GTPase cascade and interaction with the exocyst complex. Dev Cell (2011) 1.50

Transport of newly synthesized sterol to the sterol-enriched plasma membrane occurs via nonvesicular equilibration. Biochemistry (2005) 1.46

Direct interaction between a myosin V motor and the Rab GTPases Ypt31/32 is required for polarized secretion. Mol Biol Cell (2008) 1.45

Intracellular sterol transport and distribution. Curr Opin Cell Biol (2006) 1.39

The Rho-GEF Rom2p localizes to sites of polarized cell growth and participates in cytoskeletal functions in Saccharomyces cerevisiae. Mol Biol Cell (1997) 1.39

Dynamic structure of membrane-anchored Arf*GTP. Nat Struct Mol Biol (2010) 1.35

Synthesis of sphingolipids with very long chain fatty acids but not ergosterol is required for routing of newly synthesized plasma membrane ATPase to the cell surface of yeast. J Biol Chem (2005) 1.32

Roles for the Drs2p-Cdc50p complex in protein transport and phosphatidylserine asymmetry of the yeast plasma membrane. Traffic (2006) 1.31

Phosphatidylserine is polarized and required for proper Cdc42 localization and for development of cell polarity. Nat Cell Biol (2011) 1.31

Phosphatidylinositol transfer proteins: the long and winding road to physiological function. Trends Cell Biol (1998) 1.29

PI4P and Rab inputs collaborate in myosin-V-dependent transport of secretory compartments in yeast. Dev Cell (2011) 1.28

The Exo70 subunit of the exocyst is an effector for both Cdc42 and Rho3 function in polarized exocytosis. Mol Biol Cell (2009) 1.27

The Rho GDI Rdi1 regulates Rho GTPases by distinct mechanisms. Mol Biol Cell (2008) 1.27

Yeast synaptobrevin homologs are modified posttranslationally by the addition of palmitate. Proc Natl Acad Sci U S A (1995) 1.25

The Sec14-superfamily and the regulatory interface between phospholipid metabolism and membrane trafficking. Biochim Biophys Acta (2007) 1.24

An arf1Delta synthetic lethal screen identifies a new clathrin heavy chain conditional allele that perturbs vacuolar protein transport in Saccharomyces cerevisiae. Genetics (1998) 1.23

The oxysterol binding protein Kes1p regulates Golgi apparatus phosphatidylinositol-4-phosphate function. Proc Natl Acad Sci U S A (2007) 1.23

The Gcs1 and Age2 ArfGAP proteins provide overlapping essential function for transport from the yeast trans-Golgi network. J Cell Biol (2001) 1.22

Activity of specific lipid-regulated ADP ribosylation factor-GTPase-activating proteins is required for Sec14p-dependent Golgi secretory function in yeast. Mol Biol Cell (2002) 1.20

Osh proteins regulate membrane sterol organization but are not required for sterol movement between the ER and PM. Traffic (2011) 1.20

Modulation of sphingolipid metabolism by the phosphatidylinositol-4-phosphate phosphatase Sac1p through regulation of phosphatidylinositol in Saccharomyces cerevisiae. J Biol Chem (2009) 1.20

Growth control of Golgi phosphoinositides by reciprocal localization of sac1 lipid phosphatase and pik1 4-kinase. Traffic (2007) 1.18

A detour for yeast oxysterol binding proteins. J Biol Chem (2012) 1.17

The Gcs1 Arf-GAP mediates Snc1,2 v-SNARE retrieval to the Golgi in yeast. Mol Biol Cell (2006) 1.17

Association of yeast transporters with detergent-resistant membranes correlates with their cell-surface location. Traffic (2006) 1.16

The lateral compartmentation of the yeast plasma membrane. Yeast (2010) 1.15

Association of the Rho family small GTP-binding proteins with Rho GDP dissociation inhibitor (Rho GDI) in Saccharomyces cerevisiae. Oncogene (1997) 1.14

Reassessment of the role of plasma membrane domains in the regulation of vesicular traffic in yeast. J Cell Sci (2011) 1.13

Flippase-mediated phospholipid asymmetry promotes fast Cdc42 recycling in dynamic maintenance of cell polarity. Nat Cell Biol (2012) 1.12

The uracil transporter Fur4p associates with lipid rafts. J Biol Chem (2002) 1.11

Trans-Golgi network and endosome dynamics connect ceramide homeostasis with regulation of the unfolded protein response and TOR signaling in yeast. Mol Biol Cell (2008) 1.10

Raft partitioning of the yeast uracil permease during trafficking along the endocytic pathway. Traffic (2003) 1.09

SEC14-dependent secretion in Saccharomyces cerevisiae. Nondependence on sphingolipid synthesis-coupled diacylglycerol production. J Biol Chem (1999) 1.07

Biological functions of phosphatidylinositol transfer proteins. Biochem Cell Biol (2004) 1.03

Use of bimolecular fluorescence complementation to study in vivo interactions between Cdc42p and Rdi1p of Saccharomyces cerevisiae. Eukaryot Cell (2007) 1.02

The sterol-binding protein Kes1/Osh4p is a regulator of polarized exocytosis. Traffic (2011) 1.01

Homologues of oxysterol-binding proteins affect Cdc42p- and Rho1p-mediated cell polarization in Saccharomyces cerevisiae. Traffic (2006) 0.99

Generic sorting of raft lipids into secretory vesicles in yeast. Traffic (2011) 0.98

Phosphatidylcholine synthesis influences the diacylglycerol homeostasis required for SEC14p-dependent Golgi function and cell growth. Mol Biol Cell (2001) 0.97

Functionality and specific membrane localization of transport GTPases carrying C-terminal membrane anchors of synaptobrevin-like proteins. EMBO J (1995) 0.97

Molecular evolution of the Rab-escort-protein/guanine-nucleotide-dissociation-inhibitor superfamily. Mol Biol Cell (2003) 0.92

Genetic analysis of yeast Yip1p function reveals a requirement for Golgi-localized rab proteins and rab-Guanine nucleotide dissociation inhibitor. Genetics (2004) 0.92

Regulation of Gic2 localization and function by phosphatidylinositol 4,5-bisphosphate during the establishment of cell polarity in budding yeast. J Biol Chem (2008) 0.91

The function of two Rho family GTPases is determined by distinct patterns of cell surface localization. Mol Cell Biol (2010) 0.90

Phospholipid-synthesizing enzymes in Golgi membranes of the yeast, Saccharomyces cerevisiae. FEBS Lett (1995) 0.89

A phosphatidylinositol-transfer protein and phosphatidylinositol-4-phosphate 5-kinase control Cdc42 to regulate the actin cytoskeleton and secretory pathway in yeast. Mol Biol Cell (2009) 0.88

Membrane metabolism mediated by Sec14 family members influences Arf GTPase activating protein activity for transport from the trans-Golgi. Proc Natl Acad Sci U S A (2005) 0.83

Phosphatidylinositol-4,5-bisphosphate and phospholipase D-generated phosphatidic acid specify SNARE-mediated vesicle fusion for prospore membrane formation. Eukaryot Cell (2009) 0.81

Insight into the role of dynamics in the conformational switch of the small GTP-binding protein Arf1. J Biol Chem (2010) 0.78

The yeast Arf GTPase-activating protein Age1 is regulated by phospholipase D for post-Golgi vesicular transport. J Biol Chem (2010) 0.78