Crossref
journal-article
Elsevier BV
Current Opinion in Cell Biology (78)
References
60
Referenced
439
{'key': '10.1016/S0955-0674(96)80033-0_BIB1', 'first-page': '1424', 'article-title': 'Fine structure of blood capillaries', 'volume': '24', 'author': 'Palade', 'year': '1953', 'journal-title': 'J Appl Physics'}
/ J Appl Physics / Fine structure of blood capillaries by Palade (1953)10.1083/jcb.127.5.1217
/ J Cell Biol / Filipin-sensitive caveolae-mediated transport in endothelium: reduced transcytosis, scavenger endocytosis, and capillary permeability of select macromolecules by Schnitzer (1994)10.1016/0962-8924(93)90065-9
/ Trends Cell Biol / Potocytosis of small molecules and ions by caveolae by Anderson (1993)10.1016/0962-8924(94)90114-7
/ Trends Cell Biol / Caveolae, caveolin and caveolin-rich membrane domains: a signalling hypothesis by Lisanti (1994)10.1073/pnas.89.21.10517
/ Proc Natl Acad Sci USA / Sequence and expression of caveolin, a protein component of caveolae plasma membrane domains phosphorylated on tyrosine in Rous sarcoma virus-transformed fibroblasts by Glenney (1992)10.1083/jcb.118.5.1003
/ J Cell Biol / VIP21, a 21 KD membrane protein is an integral component of trans-Golgi network-derived transport vesicles by Kurzchalia (1992)10.1016/0092-8674(92)90143-Z
/ Cell / Caveolin, a protein component of caveolae membrane coats by Rothberg (1992)10.1083/jcb.127.5.1233
/ J Cell Biol / Induction of caveolin during adipogenesis and association of GLUT4 with caveolin-rich vesicles by Scherer (1994)10.1083/jcb.129.4.999
/ J Cell Biol / Expression and compartmentalization of caveolin in adipose cells: coordinate regulation with and structural segregation from GLUT4 by Kandror (1995)10.1073/pnas.92.5.1381
/ Proc Natl Acad Sci USA / Reduction of caveolin and caveolae in oncogenically transformed cells by Koleske (1995)10.1002/j.1460-2075.1993.tb05804.x
/ EMBO J / Caveolae and sorting in the trans-Golgi-network of epithelial cells by Dupree (1993)10.1074/jbc.270.12.6838
/ J Biol Chem / Caveolin is palmitoylated on multiple cystein residues. Palmitoylation is not necessary for localization of caveolin to caveolae by Dietzen (1995)10.1091/mbc.6.7.911
/ Mol Biol Cell / VIP21-caveolin, a membrane protein constituent of the caveolar coat, forms high molecular mass oligomers in vivo and in vitro by Monier (1995)10.1074/jbc.270.27.16395
/ J Biol Chem / Caveolin isoforms differ in their N-terminal protein sequence and subcellular distribution. Identification and epitope mapping of an isoform-specific monoclonal antibody probe by Scherer (1995)10.1016/0014-5793(95)01256-7
/ FEBS Letts / M-caveolin, a muscle-specific caveolin-related protein by Way (1995)10.1074/jbc.271.4.2255
/ J Biol Chem / Molecular cloning of caveolin-3, a novel member of the caveolin gene family expressed predominantly in muscle by Tang (1996)10.1073/pnas.93.1.131
/ Proc Natl Acad Sci USA / Identification, sequence, and expression of caveolin-2 defines a caveolin gene family by Scherer (1996)10.1074/jbc.270.26.15693
/ J Biol Chem / Evidence for a regulated interaction between heterotrimeric G proteins and caveolin by Li (1995)10.1016/0092-8674(95)90407-7
/ Cell / Heterotrimeric G proteins: organizers of transmembrane signals by Neer (1995)10.1073/pnas.91.24.11728
/ Proc Natl Acad Sci USA / Signal transduction of a G-protein-coupled receptor in caveolae: colocalization of endothelin and its receptor with caveolin by Chun (1994)10.1083/jcb.120.5.1147
/ J Cell Biol / Calcium pump of the plasma membrane is localized in caveolae by Fujimoto (1993)10.1083/jcb.119.6.1507
/ J Cell Biol / Localization of inositol 1,4,5-triphosphate receptor-like protein in plasmalemmal caveolae by Fujimoto (1993)10.1083/jcb.129.6.1523
/ J Cell Biol / Insulin stimulates the tyrosine phosphorylation of caveolin by Mastick (1995)10.1083/jcb.131.1.125
/ J Cell Biol / Isolation of phosphooligosaccharide/phosphoinositol glycan from caveolae and cytosol of insulin-stimulated cells by Parpal (1995)10.1074/jbc.270.45.27179
/ J Biol Chem / Compartmentalized production of ceramide at the cell surface by Liu (1995)10.1016/0092-8674(92)90189-J
/ Cell / Sorting of GPI-anchored proteins to glycolipid-enriched membrane subdomains during transport to the apical cell surface by Brown (1992)10.1016/S0021-9258(18)47340-1
/ J Biol Chem / Detergent-insoluble glycolipid microdomains in lymphocytes in the absence of caveolae by Fra (1994)10.1083/jcb.129.3.619
/ J Cell Biol / Glycolipid-anchored proteins in neuroblastoma cells form detergent-resistant complexes without caveolin by Gorodinsky (1995)10.1016/S0962-8924(00)88990-4
/ Trends Cell Biol / Guilt by insolubility — does a protein's detergent-insolubility reflect a caveolar location? by Kurzchalia (1995)10.1073/pnas.91.25.12130
/ Proc Natl Acad Sci USA / Interactions between saturated acyl chains confer detergent resistance on lipids and glycosylphosphatidylinositol (GPI)-anchored proteins: GPI-anchored proteins in liposomes and cells show similar behavior by Schroeder (1994)10.1126/science.7660120
/ Science / Digging into caveolae by Parton (1995)10.1083/jcb.126.2.353
/ J Cell Biol / Cysteine3 of Src family protein tyrosine kinase determines palmitoylation and localization in caveolae by Shenoy (1994)10.1073/pnas.92.19.8655
/ Proc Natl Acad Sci USA / De novo formation of caveolae in lymphocytes by expression of VIP21-caveolin by Fra (1995)10.1073/pnas.92.20.9407
/ Proc Natl Acad Sci USA / Oligomeric structure of caveolin: implications for caveolae membrane organization by Sargiacomo (1995)10.1016/0014-5793(95)95228-O
/ FEBS Lett / A photoreactive derivative of ganglioside GM1 specifically cross-links VIP21-caveolin on the cell surface by Fra (1995)10.1073/pnas.92.22.10339
/ Proc Natl Acad Sci USA / VIP21-caveolin is a cholesterol-binding protein by Murata (1995)10.1083/jcb.111.6.2931
/ J Cell Biol / Cholesterol controls the clustering of the glycophospholipid-anchored membrane receptor for 5-methyltetrahydrofolate by Rothberg (1990)10.1021/bi00044a004
/ Biochemistry / Plasma membrane caveolae mediate the efflux of cellular free cholesterol by Fielding (1995)10.1083/jcb.127.5.1199
/ J Cell Biol / Regulated internalization of caveolae by Parton (1994)10.1016/0955-0674(95)80015-8
/ Curr Opin Cell Biol / The emergence of clathrin-independent pinocytic pathways by Lamaze (1995)10.1074/jbc.270.24.14399
/ J Biol Chem / Endothelial caveolae have the molecular transport machinery for vesicle budding, docking, and fusion including VAMP, NSF, SNAP, annexins, and GTPases by Schnitzer (1995)10.1083/jcb.131.4.929
/ J Cell Biol / Hormonal regulation of caveolae internalization by Smart (1995)10.1152/ajpcell.1991.260.2.C338
/ Am J Physiol / Cell fractionation and electron microscope studies of kidney folate-binding protein by Hjelle (1991)10.1152/ajpcell.1993.264.2.C302
/ Am J Physiol / Internalization and intracellular transport of folate-binding protein in rat kidney proximal tubule by Birn (1993)10.1083/jcb.132.1.35
/ J Cell Biol / Endocytosis of GPI-linked membrane folate receptor-alpha by Rijnboutt (1996)10.1073/pnas.92.9.3824
/ Proc Natl Acad Sci USA / Folate receptors targeted to clathrin-coated pits cannot regulate vitamin uptake by Ritter (1995)10.1101/SQB.1992.057.01.065
/ Cold Spring Harb Symp Quant Biol / Each caveola contains multiple glycosyl-phosphatidylinositol anchored membrane proteins by Ying (1992)10.1073/pnas.92.22.10104
/ Proc Natl Acad Sci USA / A detergent-free method for purifying caveolae membrane from tissue culture cells by Smart (1995)10.1083/jcb.129.2.335
/ J Cell Biol / The urokinase-type plasminogen activator receptor, a GPI-linked protein, is localized in caveolae by Stahl (1995)10.1126/science.7660128
/ Science / Separation of caveolae from associated microdomains of GPI-anchored proteins by Schnitzer (1995)10.1126/science.7516582
/ Science / Sequestration of GPI-anchored proteins in caveolae triggered by crosslinking by Mayor (1994)10.1091/mbc.6.7.929
/ Mol Biol Cell / Insolubility and redistribution of GPI-anchored proteins at the cell surface after detergent treatment by Mayor (1995)10.1083/jcb.131.6.1421
/ J Cell Biol / Caveolin cycles between plasma membrane caveolae and the Golgi complex by microtubule-dependent and microtubule-independent steps by Conrad (1996)10.1083/jcb.127.5.1185
/ J Cell Biol / Caveolin moves from caveolae to the Golgi apparatus in response to cholesterol oxidation by Smart (1994)10.1016/0014-5793(96)00585-6
/ FEBS Lett / And still they are moving…Dynamic properties of caveolae by Kurzchalia (1996)10.1177/42.2.8288861
/ J Histochem Cytochem / Ultrastructural localization of gangliosides: GM1 is concentrated in caveolae by Parton (1994)10.1083/jcb.87.1.180
/ J Cell Biol / Organelle relationships in cultured 3T3-L1 preadipocytes by Novikoff (1980)10.1083/jcb.122.4.789
/ J Cell Biol / Signal transducing molecules and GPI-linked proteins form a caveolin-rich insoluble complex in MDCK cells by Sargiacomo (1993)10.1016/S0021-9258(19)47038-5
/ J Biol Chem / Tyrosine phosphorylation of a 22-kDa protein is correlated with phosphorylation by Rous sarcoma virus by Glenney (1989)10.1074/jbc.271.7.3863
/ J Biol Chem / Phosphorylation of caveolin by Src tyrosine kinases. The alpha-isoform of caveolin is selectively phosphorylated by v-Src in vivo by Li (1996)
@article{Parton_1996, title={Caveolae and caveolins}, volume={8}, ISSN={0955-0674}, url={http://dx.doi.org/10.1016/s0955-0674(96)80033-0}, DOI={10.1016/s0955-0674(96)80033-0}, number={4}, journal={Current Opinion in Cell Biology}, publisher={Elsevier BV}, author={Parton, Robert G}, year={1996}, month=aug, pages={542–548} }