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Anderson, R. G. W. and Orci, L (1988). A view of acidic intracellular compartments. J. Cell. Biol 106, 539-543.[Free Full Text]

Ashworth, R., Yu, R., Nelson, E. J., Dermer, S., Gershengorn, M. C. and Hinkle, P. M (1995). Visualization of the thyrotropin-releasing hormone receptor and its ligand during endocytosis and recycling. Proc. Natl. Acad. Sci.USA 92, 512-516.[Abstract/Free Full Text]

Barrett, A. J., Brown, M. A., Dando, P. M., Knight, C. G., McKie, N., Rawlings, N. D. and Serizawa, A (1995). Thimet oligopeptidase and oligopeptidase M or neurolysin. Methods Enzymol 248, 529-556.[Medline]

Beaudet, A., Nouel, D., Stroh, T., Vandenbulcke, F., Dal-Farra, C. and Vincent, J.-P (1998). Fluorescent ligands for studying neuropeptide receptors by cofocal microscopy. Braz. J. Med. Biol. Res 31, 1479-1489.[Medline]

Bleil, J. D. and Bretscher, M. S (1982). Transferrin receptor and its recycling in HeLa cells. EMBO J 1, 351-355.[Medline]

Bock, J. B., Klumperman, J., Davanger, S. and Scheller, R. H (1997). Syntaxin 6 functions in trans-golgi network vesicle trafficking. Mol. Biol. Cell 8, 1261-1271.[Abstract]

Botto, J. M., Chabry, J., Sarret, P., Vincent, J.-P. and Mazella, J (1998). Stable expression of the mouse levocabastine-sensitive neurotensin receptor in HEK 293 cell line: binding properties, photoaffinity labeling, and internalization mechanism. Biochem. Biophys. Res. Com 243, 585-590.[Medline]

Brass, L. F., Pizzaro, S., Ahuja, M., Belmonte, E., Blanchard, N., Stadel, J. M. and Hoxie, J. A (1994). Changes in the structure and function of the human thrombin receptor during receptor activation, internalization and recycling. J. Biol. Chem 269, 2943-2952.[Abstract/Free Full Text]

Bucci, C., Parton, R. G., Mather, I. H., Stunnenberg, H., Simmons, K., Hoflack, B. and Zerial, M (1992). The small GTPase rab 5 functions as a regulatory factor in the early endocytic pathway. Cell 70, 715-728.[Medline]

Burgevin, M. C., Castel, M. N., Quarteronet, D., Chevet, T. and Laduron, P. M (1992). Neurotensin increases tyrosine hydroxylase messenger RNA-positive neurons in substantia nigra after retrograde axonal transport. Neuroscience 49, 627-633.[Medline]

Carlsson, S. R., Roth, J., Piller, F. and Fukuda, M (1998). Isolation and characterization of human lysosomal membrane glycoproteins, h-lamp-1 and h-lamp-2. Major sialoglycoproteins carrying polylactosaminoglycan. J. Biol. Chem 263, 18911-18919.[Abstract/Free Full Text]

Carpenter, G. and Cohen, S (1976). 125I-labeled human epidermal growth factor: binding, internalization and degradation in human fibroblasts. J. Cell. Biol 71, 159-171.[Abstract/Free Full Text]

Carraway, R. E. and Leeman, S (1973). The isolation of a new hypotensive peptide, neurotensin from bovine hypothalami. J. Biol. Chem 248, 6854-6861.[Abstract/Free Full Text]

Castel, M. N., Faucher, D., Cuine, F., Dubedat, P., Boireau, A. and Laduron, P. M (1991). Identification of intact neurotensin in substantia nigra after its retrograde transport in dopaminergic neurons. J. Neurochem 56, 1816-1818.[Medline]

Chabry, J., Gaudriault, G., Vincent, J.-P. and Mazella, J (1993). Implication of various forms of neurotensin receptors in the mechanism of internalization of neurotensin in cerebral neurons. J. Biol. Chem 208, 17138-17144.

Chabry, J., Botto, J.-M., Nouel, D., Beaudet, A., Vincent, J.-P. and Mazella, J (1995). Thr-422 and Tyr-424 residues in the carboxyl terminus are critical for the internalization of the rat neurotensin receptor. J. Biol. Chem 270, 2439-2442.[Abstract/Free Full Text]

Chalon, P., Vita, N., Kaghad, M., Guillemot, M., Bonnin, J., Delpech, B., Le Fur, G., Ferrara, P. and Caput, D (1996). Molecular cloning of a levocabastine-sensitive neurotensin binding site. FEBS Lett 386, 91-94.[Medline]

Chavrier, P., Parton, R. G., Hauri, H. P., Simons, K. and Zerial, M (1990). Localization of low molecular weight GTP binding proteins to exocytic and endocytic compartments. Cell 62, 317-329.[Medline]

Dautry-Varsat, A., Ciechanover, A. and Lodish, H. F (1983). pH and the recycling of transferrin during receptor-mediated endocytosis. Proc.Natl. Acad. Sci. USA 80, 2258-2262.[Abstract/Free Full Text]

Dell'Angelica, E. C., Puertollano, R., Mullins, C., Aguilar, R. C., Vargas, J. D., Hartnell, L. M. and Bonifacino, J. S (2000). GGAs: A family of ADP ribosylation factor-binding proteins related to adaptors and associated with the Golgi complex. J. Cell Biol 149, 81-93.[Abstract/Free Full Text]

Faure, M. P., Gaudreau, P., Shaw, I., Cashman, N. R. and Beaudet, A (1994). Synthesis of a biologically active fluorescent probe for labeling neurotensin receptors. J. Histochem. Cytochem 42, 755-763.[Abstract]

Faure, M. P., Alonso, A., Nouel, D., Gaudriault, G., Dennis, M., Vincent, J.-P. and Beaudet, A (1995). Somatodendritic internalization and perinuclear targeting of neurotensin in the mammalian brain. J. Neurosci 15, 4140-4147.[Abstract]

Faure, M. P., Labbe-Jullie, C., Cashman, N. R., Kitagi, P. and Beaudet, A (1995). Binding and internalization of neurotensin in hybrid cells derived from septal cholinergic neurons. Synapse 20, 106-116.[Medline]

Faure, M. P., Nouel, D. and Beaudet, A (1995). Axonal and dendritic transport of internalized neurotensin in rat mesostriatal dopaminergic neurons. Neuroscience 68, 519-529.[Medline]

Feng, Y., Press, B. and Wandinger-Ness, A (1995). Rab 7: An important regulator of late endocytic membrane traffic. J. Cell. Biol 131, 1435-1452.[Abstract/Free Full Text]

Garrido, P. A. G., Vandenbulcke, F., Ramjaun, A. R., Vincent, B., Checler, F., Ferro, E. and Beaudet, A (1999). Confocal microscopy reveals thimet oligopeptidase (E.C.3.4.24.15) and neurolysin (E.C.3.4 24.16) in the classical secretory pathway. DNA Cell Biol 18, 323-331.[Medline]

Gaudriault, G., Nouel, D., Dal Farra, C., Beaudet, A. and Vincent, J.-P (1997). Receptor-induced internalization of elective peptidicand opioid ligands. J. Biol. Chem 272, 2880-2888.[Abstract/Free Full Text]

Ghinea, N., Thu Vu Hai, M., Groyer-Picard, M.-T., Houiller, A., Schoevaert, D. and Milgrom, E (1992). Pathways of internalization of the hCG/LH receptor: immunoelectron microscopic studies in Leydig cells and transfected cells. J. Cell Biol 118, 1347-1358.[Abstract/Free Full Text]

Goldstein, J. L., Brown, M. S., Anderson, R. G. W., Russel, D. W. and Schneider, W. J (1985). Receptor-mediated endocytosis: concepts emerging from the LDL receptor system. Annu. Rev. Cell. Biol 1, 1-39.

Gonatas, N. K., Kim, S. U., Stieber, A. and Avrameas, S (1977). Internalization of lectins in neuronal GERL. J. Cell. Biol 73, 1-13.[Abstract/Free Full Text]

Gorvel, J. P., Chavrier, P., Zerial, M. and Gruenberg, J (1991). Rab 5 controls early endosomes fusion in vitro. Cell 64, 915-925.[Medline]

Grady, E. F., Garland, A. M., Gamp, P; D., Lovett, M., Payan, D. G. and Bunnett, N. W (1995). Delineation of the endocytic pathway of substance P and its seven-transmembrane domain NK1 receptor. Mol. Biol. Cell 6, 509-524.[Abstract]

Grady, E. F., Slice, L. W., Brant, W. O., Walsh, J. H., Payan, D. G. and Bunnet, N. W (1995). Direct observation of endocytosis of gastrin releasing peptide and its receptor. J. Biol. Chem 270, 4603-4611.[Abstract/Free Full Text]

Green, S. A. and Kelly, R. B (1992). Low density lipoprotein receptor and cation-independent mannose 6-phosphate receptor are transported from the cell surface to the Golgi apparatus at equal rates in PC12 cells. J. Cell. Biol 117, 47-55.[Abstract/Free Full Text]

Gruenberg, J. and Maxfield, F. R (1995). Membrane transport in the endocytic pathway. Curr. Opin. Cell Biol 7, 552-563.[Medline]

Hermans, E. and Maloteaux, J. M (1998). Mechanisms of regulation of neurotensin receptors. Pharmacol. Ther 79, 89-104.[Medline]

Hermans, E., Vanisberg, M. A, Geurts, M. and Maloteaux, J. M (1997). Down-regulation of neurotensin receptors after ligand-induced internalization in rat primary cultured neurons. Neurochem. Int 31, 291-299.[Medline]

Heuser, J. E. and Anderson, R. G. W (1989). Hypertonic media inhibit receptor-mediated endocytosis by blocking clathrin-coated pit formation. J. Cell Biol 108, 389-400.[Abstract/Free Full Text]

Hopkins, C. R. and Trowbridge, I. S (1983). Internalization and processing of transferrin and the transferrin receptor in human carcinoma A431 cells. J. Cell Biol 97, 508-521.[Abstract/Free Full Text]

Hoxie, J. A., Ahuja, M., Belmonte, E., Pizarro, S., Parton, R. and Brass, L. F (1993). Internalization and recycling of activated thrombin receptors. J. Biol. Chem 268, 13756-13763.[Abstract/Free Full Text]

Kitabgi, P., Checler, F., Mazella, J. and Vincent, J.-P (1985). Pharmacologyand biochemistry of neurotensin receptors. Rev. Clin. Bas. Pharmacol 5, 397-486.[Medline]

Klausner, R. D., Ashwell, G., Van Renswoude, J., Harford, J. B. and Bridges, K. R (1983). Binding of apotransferrin to K562 cells: explanation of the transferrin cycle. Proc. Natl. Acad. Sci. USA 80, 2263-2266.[Abstract/Free Full Text]

Koenig, J. A. and Edwardson, J. M (1997). Endocytosis and recycling of G-protein-coupled receptors. Trends Pharmacol. Sci 18, 276-287.[Medline]

Koenig, J. A., Kaur, R., Dodgeon, I., Edwardson, J. M. and Humphrey, P. P. A (1998). Fates of endocytosed somatostatin SST2 receptors and associated agonists. Biochem. J 336, 291-298.

Kreis, T. E. and Lodish, H. F (1986). Oligomerization is essential for transport of vesicular stomatidis viral glycoprotein to the cell surface. Cell 46, 929-937.[Medline]

Ladinsky, M. S. and Howell, K. E (1992). The trans-Golgi network can be dissected structurally and functionally from the cisternae of the Golgi complex by brefeldin A. Eur. J. Cell Biol 59, 92-105.[Medline]

Laduron, P. M (1992). Genomic pharmacology: more intracellular sites for drug action. Biochem. Pharmacol 47, 3-13.

Laduron, P. M (1994). From receptor internalization to nuclear translocation. New targets for long-term pharmacology. Biochem. Pharmacol 47, 3-14.[Medline]

Larkin, J. M., Brown, M. S., Goldstein, J. L. and Anderson, R. G. W (1983). Depletion of intracellular potassium arrests coated pit formation and receptor-mediated endocytosis in fibroblasts. Cell 33, 273-285.[Medline]

Lencer, W. I., Strohmeier, G., Moe, S., Carlson, S. L., Constable, C. T. and Madara, J. L (1995). Signal transduction by cholera toxin: processing in vesicular compartments does not require acidification. Am. J. Physiol 269, 548-557.

Mallet, W. G. and Maxfield, F. R (1999). Chimeric forms of furin and TGN38 are transported from the plasma membrane to the trans-Golgi network via distinct endosomal pathways. J. Cell Biol 146, 345-359.[Abstract/Free Full Text]

Marks, M. S., Woodruff, L., Ohno, H. and Bonifacino, J. S (1996). Protein targeting by tyrosine-and di-leucine-based signals: evidence for distinct saturable components. J. Cell. Biol 135, 341-354.[Abstract/Free Full Text]

Mazella, J., Leonard, K., Chabry, J., Kitabgi, P., Vincent, J.-P. and Beaudet, A (1991). Binding and internalization of iodinated neurotensin in neuronal cultures from embryonic mouse brain. Brain Res 564, 249-255.[Medline]

Mazella, J., Botto, J.-M., Guillemare, E., Coppola, T., Sarret, P. and Vincent, J.-P (1996). Structure, functional expression, and cerebral localization of the levocabastine-sensitive neurotensin/neuromedin N receptor from mouse brain. J. Neurosci 16, 5613-5620.[Abstract/Free Full Text]

Mazella, J., Zsurger, N., Navarro, V., Chabry, J., Kaghad, M., Caput, D., Ferrara, P., Vita, N., Gully, D., Maffrand, J. P. and Vincent, J.-P (1998). The 100-kDa neurotensin receptor is gp95/sortilin, a non-G-protein-coupled receptor. J. Biol. Chem 273, 26273-26276.[Abstract/Free Full Text]

Nouel, D., Faure, M. P., St-Pierre, J. A., Alonso, R., Quirion, R. and Beaudet, A (1997). Differential binding profile and internalization process of neurotensin via neuronal and glial receptors. J. Neurosci 17, 1795-1805.[Abstract/Free Full Text]

Nouel, D., Gaudriault, G., Houle, M., Reisine, T., Vincent, J.-P., Mazella, J. and Beaudet, A (1997). Differential internalization of somatostatin in COS-7 cells transfected with SST1 and SST2 receptor subtypes: a confocal microscopic study using novel fluorescent somatostatine derivatives. Endocrinol 138, 296-306.[Abstract/Free Full Text]

Pearse, B. M. F (1982). Coated vesicles from human placenta carry ferritin, transferrin, and immunoglobulin G. Proc. Natl. Acad. Sci. USA 79, 451-455.[Abstract/Free Full Text]

Petersen, C. M., Nielsen, M. S., Nykjaer, A., Jacobsen, L., Tommerup, N., Rasmussen, H. H., R\277igaard, H., Gliemann, J., Madsen, P. and Moestrup, S. K (1997). Molecular identification of a novel candidate sorting receptor purified from human brain by receptor-associated protein affinity chromatography. J. Biol. Chem 272, 3599-3605.[Abstract/Free Full Text]

Rohrer, J., Schweizer, A., Russel, D. and Kornfeld, S (1996). The targeting of lamp-1 to lysosomes is dependant on the spacing of its cytoplasmic tail tyrosine sorting motif relative to the membrane. J. Cell Biol 132, 565-576.[Abstract/Free Full Text]

Sandvig, K., Olsnes, S., Petersen, O. W. and Van Deurs, B (1987). Acidification of the cytosol inhibits endocytosis from coated pits. J. Cell Biol 105, 679-689.[Abstract/Free Full Text]

Souaze, F., Rostene, W. and Forgez, P (1997). Neurotensin agonist induces differential regulation of neurotensin receptor mRNA. J. Biol. Chem 272, 10087-10094.[Abstract/Free Full Text]

Stoscheck, C. M. and Carpenter, G (1984). Down regulation of epidermal growth factor receptors: direct demonstration of receptor degradation in human fibroblasts. J. Cell Biol 98, 1048-1053.[Abstract/Free Full Text]

Subtil, A., Hemar, A. and Dautry-Varsat, A (1994). Rapid endocytosis of interleukin 2 receptors when clathrin-coated pit endocytosis is inhibited. J. Cell Sci 107, 3461-3468.[Abstract]

Tanaka, K., Masu, M. and Nakanishi, S (1990). Structure and functional expression of the cloned rat neurotensin receptor. Neuron 4, 847-854.[Medline]

Tarasova, N. I, Stauber, R. H., Choi, J. K., Hudson, E. A., Czerwinski, G., Miller, J. L., Pavlakis, G. N., Michejda, C. J. and Wank, S. A (1997). Visualization of G protein-coupled receptor trafficking with the aid of the green fluorescent protein. J. Biol. Chem 272, 14817-14824.[Abstract/Free Full Text]

Turner, J. T., James-Kracke, M. R. and Camden, J. M (1990). Regulation of the neurotensin receptor and intracellular calcium mobilization in HT29 cells. J. Pharmacol. Exp. Ther 253, 1049-1056.[Abstract/Free Full Text]

Urbe, S., Huber, L. A., Zerial, M., Tooze, S. A. and Patton, R. G (1993). Rab11, a small GTPase associated with both constitutive and regulated secretory pathways in PC12 cells. FEBS Lett 334, 175-182.[Medline]

Ullrich, O., U., Reinsch, S., Urbe, S., Zerial, M. and Parton, R. G (1996). Rab11 regulates recycling through the pericentriolar recycling endosome. J. Cell Biol 135, 913-924.[Abstract/Free Full Text]

Von Zastrow, M. and Kobilka, B. K (1992). Ligand-induced internalization and recycling of human2-adrenergic receptors between the plasma membrane and endosomes containing transferrin receptors. J. Biol. Chem 267, 3530-3538.[Abstract/Free Full Text]


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