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H. Lannert, Garsten Bünning, D. Jeckel, F. Wieland (1994)
Lactosylceramide is synthesized in the lumen of the Golgi apparatusFEBS Letters, 342
K. Berge, H. Tian, G. Graf, Liqing Yu, N. Grishin, J. Schultz, P. Kwiterovich, Bei Shan, R. Barnes, H. Hobbs (2000)
Accumulation of dietary cholesterol in sitosterolemia caused by mutations in adjacent ABC transporters.Science, 290 5497
A. Menon, W. Watkins, S. Hrafnsdóttir (2000)
Specific proteins are required to translocate phosphatidylcholine bidirectionally across the endoplasmic reticulumCurrent Biology, 10
A. Helvoort, Alexander Smith, H. Sprong, I. Fritzsche, A. Schinkel, P. Borst, G. Meer (1996)
MDR1 P-Glycoprotein Is a Lipid Translocase of Broad Specificity, While MDR3 P-Glycoprotein Specifically Translocates PhosphatidylcholineCell, 87
M. Bretscher, S. Munro (1993)
Cholesterol and the Golgi apparatus.Science, 261 5126
Y. Hamon, C. Broccardo, O. Chambenoit, M. Luciani, F. Toti, Stephane Chaslin, J. Freyssinet, P. Devaux, J. Mcneish, D. Marguet, G. Chimini (2000)
ABC1 promotes engulfment of apoptotic cells and transbilayer redistribution of phosphatidylserine.Nature Cell Biology, 2
N Mohandas (1982)
10.1016/S0021-9258(20)65175-4J. Biol. Chem., 257
N. Mohandas, J. Wyatt, S. Mel, M. Rossi, S. Shohet (1982)
Lipid translocation across the human erythrocyte membrane. Regulatory factors.The Journal of biological chemistry, 257 11
A. Helvoort, A.P.M. Brouwer, R. Ottenhoff, Jos Brouwers, Jan Wijnholds, J. Beijnen, A. Rijneveld, T. Poll, M. Valk, D. Majoor, W. Voorhout, Karel Wirtz, Rpjo Elferink, Piet Borst (1999)
Mice without phosphatidylcholine transfer protein have no defects in the secretion of phosphatidylcholine into bile or into lung airspaces.Proceedings of the National Academy of Sciences of the United States of America, 96 20
M. Seigneuret, P. Devaux (1984)
ATP-dependent asymmetric distribution of spin-labeled phospholipids in the erythrocyte membrane: relation to shape changes.Proceedings of the National Academy of Sciences of the United States of America, 81 12
(2001)
This paper pinpoints the substrate for this lumenal mannosyltransferase, glucoseaminyl (GlcN) α1-6-phosphoinositol
D. Murray, D. Murray, A. Arbuzova, G. Hangyás-Mihályné, A. Gambhir, N. Ben-Tal, B. Honig, S. McLaughlin (1999)
Electrostatic properties of membranes containing acidic lipids and adsorbed basic peptides: theory and experiment.Biophysical journal, 77 6
P. Maulik, G. Shipley (1996)
Interactions of N-stearoyl sphingomyelin with cholesterol and dipalmitoylphosphatidylcholine in bilayer membranes.Biophysical journal, 70 5
M. Sheetz (2001)
Cell control by membrane–cytoskeleton adhesionNature Reviews Molecular Cell Biology, 2
A. Radhakrishnan, T. Anderson, H. Mcconnell (2000)
Condensed complexes, rafts, and the chemical activity of cholesterol in membranes.Proceedings of the National Academy of Sciences of the United States of America, 97 23
G. Daum, J. Vance (1997)
Import of lipids into mitochondria.Progress in lipid research, 36 2-3
Robert Parton (1994)
Ultrastructural localization of gangliosides; GM1 is concentrated in caveolae.The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society, 42
P. Figueiredo, R. Polizotto, D. Drecktrah, William Brown (1999)
Membrane tubule-mediated reassembly and maintenance of the Golgi complex is disrupted by phospholipase A2 antagonists.Molecular biology of the cell, 10 6
Q Zhou (1997)
10.1074/jbc.272.29.18240J. Biol. Chem., 272
G. Meer (1989)
Lipid traffic in animal cells.Annual review of cell biology, 5
B. Fleischer, Fernando Zambrano, Sidney Fleischer (1974)
Biochemical characterization of the golgi complex of mammalian cells.Journal of supramolecular structure, 2 5-6
J. Weng, N. Mata, S. Azarian, Radouil Tzekov, D. Birch, G. Travis (1999)
Insights into the Function of Rim Protein in Photoreceptors and Etiology of Stargardt's Disease from the Phenotype in abcr Knockout MiceCell, 98
H. Pelham, J. Rothman (2000)
The Debate about Transport in the Golgi—Two Sides of the Same Coin?Cell, 102
N. Mohandas, J. Wyatt, S. Mel, M. Rossi, S. Shohet (2001)
Lipid Translocation across the Human Erythrocyte Membrane
OS Nilsson (1977)
10.1083/jcb.72.3.568J. Cell Biol., 72
S. Mukherjee, T. Soe, F. Maxfield (1999)
Endocytic Sorting of Lipid Analogues Differing Solely in the Chemistry of Their Hydrophobic TailsThe Journal of Cell Biology, 144
F. Nezil, M. Bloom (1992)
Combined influence of cholesterol and synthetic amphiphillic peptides upon bilayer thickness in model membranes.Biophysical journal, 61 5
CM van Tiel (2000)
10.1042/bj3460537Biochem. J., 346
Jining Bai, Richard Pagano (1997)
Measurement of spontaneous transfer and transbilayer movement of BODIPY-labeled lipids in lipid vesicles.Biochemistry, 36 29
J. Schnitzer, Deirdre McIntosh, Ann Dvorak, Jun Liu, P. Oh (1995)
Separation of caveolae from associated microdomains of GPI-anchored proteinsScience, 269
M. Butler, P. Morell (1982)
Sidedness of Phospholipid Synthesis on Brain MembranesJournal of Neurochemistry, 39
A. Stahl, D. Hirsch, R. Gimeno, S. Punreddy, Pei Ge, N. Watson, Shraddha Patel, Mariana Kotler, Alejandra Raimondi, L. Tartaglia, H. Lodish (1999)
Identification of the major intestinal fatty acid transport protein.Molecular cell, 4 3
Greg Odorizzi, Markus Babst, S. Emr (2000)
Phosphoinositide signaling and the regulation of membrane trafficking in yeast.Trends in biochemical sciences, 25 5
J. Contos, Isao Ishii, Jerold Chun (2000)
Lysophosphatidic acid receptors.Molecular pharmacology, 58 6
E. Farge, D. Ojcius, A. Subtil, A. Dautry‐Varsat (1999)
Enhancement of endocytosis due to aminophospholipid transport across the plasma membrane of living cells.American journal of physiology. Cell physiology, 276 3
M. Fernandez-Borja, R. Wubbolts, J. Calafat, H. Janssen, N. Divecha, S. Dusseljee, J. Neefjes (1999)
Multivesicular body morphogenesis requires phosphatidyl-inositol 3-kinase activityCurrent Biology, 9
T. Martin (1998)
Phosphoinositide lipids as signaling molecules: common themes for signal transduction, cytoskeletal regulation, and membrane trafficking.Annual review of cell and developmental biology, 14
T. Harder, P. Scheiffele, P. Verkade, K. Simons (1998)
Lipid Domain Structure of the Plasma Membrane Revealed by Patching of Membrane ComponentsThe Journal of Cell Biology, 141
D. Gillooly, A. Simonsen, H. Stenmark (2001)
Cellular functions of phosphatidylinositol 3-phosphate and FYVE domain proteins.The Biochemical journal, 355 Pt 2
Xiao-yi Tang, M. Halleck, R. Schlegel, Patrick Williamson (1996)
A Subfamily of P-Type ATPases with Aminophospholipid Transporting ActivityScience, 272
(1995)
do Golgi tubules hold the key? Trends Cell Biol
Nathalie Madore, Karen Smith, C. Graham, A. Jen, Ken Brady, Susan Hall, R. Morris (1999)
Functionally different GPI proteins are organized in different domains on the neuronal surfaceThe EMBO Journal, 18
G van Meer (1989)
10.1146/annurev.cb.05.110189.001335Annu. Rev. Cell Biol., 5
P. Maulik, G. Shipley (1995)
X-ray diffraction and calorimetric study of N-lignoceryl sphingomyelin membranes.Biophysical journal, 69 5
D. Fenske, Myrna Monck, P. Cullis, Michael Hope (1979)
Lipid polymorphism and the functional roles of lipids in biological membranes.Biochimica et biophysica acta, 559 4
A. Schmidt, Michael Wolde, C. Thiele, W. Fest, H. Kratzin, A. Podtelejnikov, W. Witke, W. Huttner, H. Söling (1999)
Endophilin I mediates synaptic vesicle formation by transfer of arachidonate to lysophosphatidic acidNature, 401
References 61 and 62 describe for the first time the function of FYVE domains in mammalian cells and provide a link to the Rab5 GTPase switch in endosome dynamics
OS Nilsson, G Dallner (1977)
Enzyme and phospholipid asymmetry in liver microsomal membranesJ. Cell Biol., 72
P. Weidman (1995)
Anterograde transport through the Golgi complex: do Golgi tubules hold the key?Trends in cell biology, 5 8
M. Lee, J. Brocklyn, S. Thangada, Catherine Liu, A. Hand, R. Menzeleev, S. Spiegel, T. Hla (1998)
Sphingosine-1-phosphate as a ligand for the G protein-coupled receptor EDG-1.Science, 279 5356
DJ Gillooly (2001)
10.1042/bj3550249Biochem. J., 355
J Zimmerberg, LV Chernomordik (1999)
Membrane fusionAdv. Drug Deliv. Rev., 38
E. Goldin, C. Roff, Stephen Miller, Claire Rodriguez-Lafrasse, Marie Vanier, Roscoe Brady, Peter Pentchev (1992)
Type C Niemann-Pick disease: a murine model of the lysosomal cholesterol lipidosis accumulates sphingosine and sphinganine in liver.Biochimica et biophysica acta, 1127 3
F. Goñi, A. Alonso (1999)
Structure and functional properties of diacylglycerols in membranes.Progress in lipid research, 38 1
J. Davies, Fannie Chen, Y. Ioannou (2000)
Transmembrane molecular pump activity of Niemann-Pick C1 protein.Science, 290 5500
K. Kawai, M. Fujita, M. Nakao (1974)
Lipid components of two different regions of an intestinal epithelial cell membrane of mouse.Biochimica et biophysica acta, 369 2
Sylvain Ernest, E. Bello‐Reuss (1999)
Secretion of platelet-activating factor is mediated by MDR1 P-glycoprotein in cultured human mesangial cells.Journal of the American Society of Nephrology : JASN, 10 11
S. Corvera, M. Czech (1998)
Direct targets of phosphoinositide 3-kinase products in membrane traffic and signal transduction.Trends in cell biology, 8 11
PR Cullis (1979)
10.1016/0304-4157(79)90012-1Biochim. Biophys. Acta, 559
S Ernest (1999)
10.1681/ASN.V10112306J. Am. Soc. Nephrol., 10
J Smit (1993)
J. MCell, 75
C. Jackson, J. Casanova (2000)
Turning on ARF: the Sec7 family of guanine-nucleotide-exchange factors.Trends in cell biology, 10 2
M. Roth, K. Bi, N. Ktistakis, S. Yu (1999)
Phospholipase D as an effector for ADP-ribosylation factor in the regulation of vesicular traffic.Chemistry and physics of lipids, 98 1-2
J Zimmerberg (1999)
10.1016/S0169-409X(99)00029-0Adv. Drug Deliv. Rev., 38
T. Yoshimori, P. Keller, M. Roth, K. Simons (1996)
Different biosynthetic transport routes to the plasma membrane in BHK and CHO cellsThe Journal of Cell Biology, 133
Raluca Gagescu, Nicolas Demaurex, Robert Parton, Walter Hunziker, Lukas Huber, J. Gruenberg (2000)
The recycling endosome of Madin-Darby canine kidney cells is a mildly acidic compartment rich in raft components.Molecular biology of the cell, 11 8
F Alpy (2001)
The STAR homolog MLN64: a late endosomal cholesterol binding proteinJ. Biol. Chem., 276
A. Helenius, and Aebi (2001)
Intracellular functions of N-linked glycans.Science, 291 5512
ABCB1) secretes platelet activating factor (PAF)
R. Jahn, Helmut Grubmüller (2002)
Membrane fusion.Current opinion in cell biology, 14 4
D. Brasaemle, A. Robertson, A. Attie (1988)
Transbilayer movement of cholesterol in the human erythrocyte membrane.Journal of lipid research, 29 4
A. Mayer, D. Scheglmann, S. Dove, Alexandra Glatz, W. Wickner, A. Haas (2000)
Phosphatidylinositol 4,5-bisphosphate regulates two steps of homotypic vacuole fusion.Molecular biology of the cell, 11 3
M. Gottesman, I. Pastan (1993)
Biochemistry of multidrug resistance mediated by the multidrug transporter.Annual review of biochemistry, 62
T. Lang, D. Bruns, Dirk Wenzel, D. Riedel, P. Holroyd, C. Thiele, R. Jahn (2001)
SNAREs are concentrated in cholesterol‐dependent clusters that define docking and fusion sites for exocytosisThe EMBO Journal, 20
J. Hirsch, M. Fedorko, Z. Cohn (1968)
VESICLE FUSION AND FORMATION AT THE SURFACE OF PINOCYTIC VACUOLES IN MACROPHAGESThe Journal of Cell Biology, 38
F. Berr, P. Meier, B. Stieger (1993)
Evidence for the presence of a phosphatidylcholine translocator in isolated rat liver canalicular plasma membrane vesicles.The Journal of biological chemistry, 268 6
Thanh-Phuong Thai, Claus Rodemer, A. Jauch, A. Hunziker, A. Moser, K. Gorgas, W. Just (2001)
Impaired membrane traffic in defective ether lipid biosynthesis.Human molecular genetics, 10 2
IdaL. Genderen, J. Slot, H. Geuze, WimR Voorhout (1991)
Subcellular localization of Forssman glycolipid in epithelial MDCK cells by immuno-electronmicroscopy after freeze-substitutionThe Journal of Cell Biology, 115
B. Wattenberg, D. Silbert (1983)
Sterol partitioning among intracellular membranes. Testing a model for cellular sterol distribution.The Journal of biological chemistry, 258 4
C. Dietrich, L. Bagatolli, Z. Volovyk, N. Thompson, M. Levi, K. Jacobson, E. Gratton (2001)
Lipid rafts reconstituted in model membranes.Biophysical journal, 80 3
Hui Sun, R. Molday, J. Nathans (1999)
Retinal Stimulates ATP Hydrolysis by Purified and Reconstituted ABCR, the Photoreceptor-specific ATP-binding Cassette Transporter Responsible for Stargardt Disease*The Journal of Biological Chemistry, 274
(2001)
Macmillan Magazines Ltd NATURE REVIEWS | MOLECULAR CELL BIOLOGY
J. Gaullier, A. Simonsen, A. D’Arrigo, B. Bremnes, H. Stenmark, R. Aasland (1998)
FYVE fingers bind PtdIns(3)PNature, 394
L. McLean, M. Phillips (1984)
Kinetics of phosphatidylcholine and lysophosphatidylcholine exchange between unilamellar vesicles.Biochemistry, 23 20
(1997)
Molecular cloning of human plasma membrane phospholipid scramblase. A protein mediating transbilayer movement of plasma membrane phospholipids
G. Meer, K. Simons (1986)
The function of tight junctions in maintaining differences in lipid composition between the apical and the basolateral cell surface domains of MDCK cells.The EMBO Journal, 5
S. Grove, C. Bracker, D. Morr� (1968)
Cytomembrane Differentiation in the Endoplasmic Reticulum-Golgi Apparatus-Vesicle ComplexScience, 161
K. Simons, J. Gruenberg (2000)
Jamming the endosomal system: lipid rafts and lysosomal storage diseases.Trends in cell biology, 10 11
Y. Maeda, R. Watanabe, C. Harris, Yeongjin Hong, K. Ohishi, Keiko Kinoshita, Taroh Kinoshita (2001)
PIG‐M transfers the first mannose to glycosylphosphatidylinositol on the lumenal side of the ERThe EMBO Journal, 20
B. Kearns, T. McGee, P. Mayinger, A. Gedvilaitė, S. Phillips, S. Kagiwada, V. Bankaitis (1997)
Essential role for diacylglycerol in protein transport from the yeast Golgi complexnature, 387
J. Higgins, Christine Pigott (1982)
Asymmetric distribution of phosphatidylethanolamine in the endoplasmic reticulum demonstrated using trinitrobenzenesulphonic acid as a probe.Biochimica et biophysica acta, 693 1
T., Keenan, D. MorrC (1970)
Phospholipid class and fatty acid composition of golgi apparatus isolated from rat liver and comparison with other cell fractions.Biochemistry, 9 1
A. Simonsen, R. Lippé, S. Christoforidis, J. Gaullier, A. Brech, J. Callaghan, B. Toh, C. Murphy, M. Zerial, H. Stenmark (1998)
EEA1 links PI(3)K function to Rab5 regulation of endosome fusionNature, 394
DL Brasaemle (1988)
10.1016/S0022-2275(20)38521-7J. Lipid Res., 29
A. Tepper, P. Ruurs, T. Wiedmer, P. Sims, J. Borst, W. Blitterswijk (2000)
Sphingomyelin Hydrolysis to Ceramide during the Execution Phase of Apoptosis Results from Phospholipid Scrambling and Alters Cell-Surface MorphologyThe Journal of Cell Biology, 150
L. Pelkmans, J. Kartenbeck, A. Helenius (2001)
Caveolar endocytosis of simian virus 40 reveals a new two-step vesicular-transport pathway to the ERNature Cell Biology, 3
M. Phillips, W. Johnson, G. Rothblat (1987)
Mechanisms and consequences of cellular cholesterol exchange and transfer.Biochimica et biophysica acta, 906 2
(1999)
Appendix: do basic peptides form large lateral domains with acidic lipids when they bind to phospholipid vesicles?
V. Puri, R. Watanabe, M. Dominguez, Xiaofeng Sun, C. Wheatley, D. Marks, R. Pagano (1999)
Cholesterol modulates membrane traffic along the endocytic pathway in sphingolipid-storage diseasesNature Cell Biology, 1
Tian-yun Wang, J. Silvius (2000)
Different sphingolipids show differential partitioning into sphingolipid/cholesterol-rich domains in lipid bilayers.Biophysical journal, 79 3
Koert Burger, P. Bijl, Gerrit van (1996)
Topology of sphingolipid galactosyltransferases in ER and Golgi: transbilayer movement of monohexosyl sphingolipids is required for higher glycosphingolipid biosynthesisThe Journal of Cell Biology, 133
C. Tiel, C. Luberto, G. Snoek, Yusuf Hannun, Karel Wirtz (2000)
Rapid replenishment of sphingomyelin in the plasma membrane upon degradation by sphingomyelinase in NIH3T3 cells overexpressing the phosphatidylinositol transfer protein beta.The Biochemical journal, 346 Pt 2
J. Smit, A. Schinkel, R. Elferink, A. Groen, E. Wagenaar, L. Deemter, C. Mol, R. Ottenhoff, N.M.T. Lugt, M. Roon, M. Valk, G. Offerhaus, A. Berns, P. Borst (1993)
Homozygous disruption of the murine MDR2 P-glycoprotein gene leads to a complete absence of phospholipid from bile and to liver diseaseCell, 75
F. Alpy, M. Stoeckel, A. Dierich, J. Escola, C. Wendling, M. Chenard, M. Vanier, J. Gruenberg, C. Tomasetto, M. Rio (2001)
The Steroidogenic Acute Regulatory Protein Homolog MLN64, a Late Endosomal Cholesterol-binding Protein*The Journal of Biological Chemistry, 276
S. IJzendoorn, D. Hoekstra (1998)
(Glyco)sphingolipids Are Sorted in Sub-Apical Compartments in HepG2 Cells: A Role for Non-Golgi–Related Intracellular Sites in the Polarized Distribution of (Glyco)sphingolipidsThe Journal of Cell Biology, 142
Md. Haque, T. McIntosh, Barry Lentz (2001)
Influence of lipid composition on physical properties and peg-mediated fusion of curved and uncurved model membrane vesicles: "nature's own" fusogenic lipid bilayer.Biochemistry, 40 14
S. Naureckiene, D. Sleat, D. Sleat, H. Lackland, A. Fensom, M. Vanier, R. Wattiaux, M. Jadot, P. Lobel, P. Lobel (2000)
Identification of HE1 as the second gene of Niemann-Pick C disease.Science, 290 5500
S. Moffett, Deborah Brown, M. Linder (2000)
Lipid-dependent Targeting of G Proteins into Rafts*The Journal of Biological Chemistry, 275
R. Weigert, M. Silletta, S. Spanò, Gabriele Turacchio, C. Cericola, A. Colanzi, Silvia Senatore, R. Mancini, E. Polishchuk, M. Salmona, F. Facchiano, Koert Burger, A. Mironov, A. Luini, D. Corda (1999)
CtBP/BARS induces fission of Golgi membranes by acylating lysophosphatidic acidNature, 402
René, J. Raggers, I. Vogels, G. Meer (2001)
Multidrug-resistance P-glycoprotein (MDR1) secretes platelet-activating factor.The Biochemical journal, 357 Pt 3
M. Ladinsky, D. Mastronarde, J. Mcintosh, Kathryn Howell, Andrew Staehelin (1999)
Golgi Structure in Three Dimensions: Functional Insights from the Normal Rat Kidney CellThe Journal of Cell Biology, 144
C. Thiele, M. Hannah, F. Fahrenholz, W. Huttner (1999)
Cholesterol binds to synaptophysin and is required for biogenesis of synaptic vesiclesNature Cell Biology, 2
P. Sluijs, Michael Hull, Lukas Huber, P. Mâle, Bruno Goud, Ira Mellman (1992)
Reversible phosphorylation‐‐dephosphorylation determines the localization of rab4 during the cell cycle.The EMBO Journal, 11
B. Brügger, R. Sandhoff, S. Wegehingel, K. Gorgas, J. Malsam, J. Helms, W. Lehmann, W. Nickel, F. Wieland (2000)
Evidence for Segregation of Sphingomyelin and Cholesterol during Formation of Copi-Coated VesiclesThe Journal of Cell Biology, 151
D. Daleke, J. Lyles (2000)
Identification and purification of aminophospholipid flippases.Biochimica et biophysica acta, 1486 1
Toshihide Kobayashi, M. Beuchat, M. Lindsay, Sonia Frias, R. Palmiter, H. Sakuraba, R. Parton, J. Gruenberg (1999)
Late endosomal membranes rich in lysobisphosphatidic acid regulate cholesterol transportNature Cell Biology, 1
J. Rayner, H. Pelham (1997)
Transmembrane domain‐dependent sorting of proteins to the ER and plasma membrane in yeastThe EMBO Journal, 16
Cellular membranes have distinct compositions that reflect their unique functions. Membrane proteins, synthesized in the cytosol or at the endoplasmic reticulum (ER) membrane, are targeted to the different membranes by structural motifs. Local lipid synthesis and hydrolysis cannot explain the differences in lipid composition between the various membranes and between the two leaflets of the bilayer. The intracellular transport of lipids is selective. Lipids are transported as monomers across membranes. Various families of transporters have been identified that might provide the necessary directionality and lipid specificity. The main transport mechanism for lipids and proteins between organelles is vesicular. Selectivity in these pathways is generated by the lateral segregation of anterograde from retrograde (or resident) components. Lipid sorting is based on a spontaneous phase separation into less fluid sphingolipid–cholesterol domains, that move towards the plasma membrane, and more fluid glycerophospholipid domains, that are preferentially included in transport vesicles towards the ER. Special properties of the lipid domains are recognized by various classes of membrane protein. Some of these are cargo being sorted, others provide directionality to the resulting transport vesicles. Topologically and temporally restricted metabolism of lipids modifies their molecular shape. This seems to be an integral part of vesicle fission and, potentially, fusion. The local production of signalling lipids determines membrane flux by coat recruitment and the activation of fusion. The activity of the responsible enzymes — kinases, phosphatases and phospholipases — is subject to regulation and forms an integral part of the cellular signalling system.
Nature Reviews Molecular Cell Biology – Springer Journals
Published: Jul 1, 2001
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