Accès gratuit
Numéro
Biologie Aujourd'hui
Volume 212, Numéro 1-2, 2018
Page(s) 13 - 19
Section La signalisation dans des compartiments intracellulaires : un nouveau paradigme
DOI https://doi.org/10.1051/jbio/2018018
Publié en ligne 26 octobre 2018
  • Allen, M.D., Zhang, J. (2006). Subcellular dynamics of protein kinase A activity visualized by FRET-based reporters. Biochem Biophys Res Commun , 348, 716-721. [Google Scholar]
  • Al-Sabah, S., Al-Fulaij, M., Shaaban, G., Ahmed, H.A., Mann, R.J., Donnelly, D., Bunemann, M., Krasel, C. (2014). The GIP receptor displays higher basal activity than the GLP-1 receptor but does not recruit GRK2 or arrestin3 effectively. PLoS One , 9, e106890. [CrossRef] [PubMed] [Google Scholar]
  • Baggio, L.L., Drucker, D.J. (2007). Biology of incretins: GLP-1 and GIP. Gastroenterology , 132, 2131-2157. [CrossRef] [PubMed] [Google Scholar]
  • Calebiro, D., Nikolaev, V.O., Gagliani, M.C., de Filippis, T., Dees, C., Tacchetti, C., Persani, L., Lohse, M.J. (2009). Persistent cAMP-signals triggered by internalized G-protein-coupled receptors. PLoS Biol , 7, e1000172. [CrossRef] [PubMed] [Google Scholar]
  • Feinstein, T.N., Yui, N., Webber, M.J., Wehbi, V.L., Stevenson, H.P., King, J.D., Jr., Hallows, K.R., Brown, D., Bouley, R., Vilardaga, J.P. (2013). Noncanonical control of vasopressin receptor type 2 signaling by retromer and arrestin. J Biol Chem , 288, 27849-27860. [CrossRef] [PubMed] [Google Scholar]
  • Ferguson, S.S. (2001). Evolving concepts in G protein-coupled receptor endocytosis: the role in receptor desensitization and signaling. Pharmacol Rev , 53, 1-24. [PubMed] [Google Scholar]
  • Ferrandon, S., Feinstein, T.N., Castro, M., Wang, B., Bouley, R., Potts, J.T., Gardella, T.J., Vilardaga, J.P. (2009). Sustained cyclic AMP production by parathyroid hormone receptor endocytosis. Nat Chem Biol , 5, 734-742. [Google Scholar]
  • Girard, E., Chmiest, D., Fournier, N., Johannes, L., Paul, J.L., Vedie, B., Lamaze, C. (2014). Rab7 is functionally required for selective cargo sorting at the early endosome. Traffic , 15, 309-326. [CrossRef] [PubMed] [Google Scholar]
  • Irannejad, R., Tomshine, J.C., Tomshine, J.R., Chevalier, M., Mahoney, J.P., Steyaert, J., Rasmussen, S.G., Sunahara, R.K., El-Samad, H., Huang, B., von Zastrow, M. (2013). Conformational biosensors reveal GPCR signalling from endosomes. Nature , 495, 534-538. [CrossRef] [PubMed] [Google Scholar]
  • Irannejad, R., Tsvetanova, N.G., Lobingier, B.T., von Zastrow, M. (2015). Effects of endocytosis on receptor-mediated signaling. Curr Opin Cell Biol , 35, 137-143. [CrossRef] [PubMed] [Google Scholar]
  • Ismail, S., Dubois-Vedrenne, I., Laval, M., Tikhonova, I.G., D’Angelo, R., Sanchez, C., Clerc, P., Gherardi, M.J., Gigoux, V., Magnan, R., Fourmy, D. (2015). Internalization and desensitization of the human glucose-dependent-insulinotropic receptor is affected by N-terminal acetylation of the agonist. Mol Cell Endocrinol , 414, 202-215. [CrossRef] [PubMed] [Google Scholar]
  • Ismail, S., Gherardi, M.J., Froese, A., Zanoun, M., Gigoux, V., Clerc, P., Gaits-Iacovoni, F., Steyaert, J., Nikolaev, V.O., Fourmy, D. (2016). Internalized receptor for glucose-dependent insulinotropic peptide stimulates adenylyl cyclase on early endosomes. Biochem Pharmacol , 120, 33-45. [CrossRef] [PubMed] [Google Scholar]
  • Jensen, D.D., Lieu, T., Halls, M.L., Veldhuis, N.A., Imlach, W.L., Mai, Q.N., Poole, D.P., Quach, T., Aurelio, L., Conner, J., Herenbrink, C.K., Barlow, N., Simpson, J.S., Scanlon, M.J., Graham, B., McCluskey, A., Robinson, P.J., Escriou, V., Nassini, R., Materazzi, S., Geppetti, P., Hicks, G.A., Christie, M.J., Porter, C.J.H., Canals, M., Bunnett, N.W. (2017). Neurokinin 1 receptor signaling in endosomes mediates sustained nociception and is a viable therapeutic target for prolonged pain relief. Sci Transl Med, 9, 392, eaal3447. [CrossRef] [Google Scholar]
  • Kotowski, S.J., Hopf, F.W., Seif, T., Bonci, A., von Zastrow, M. (2011). Endocytosis promotes rapid dopaminergic signaling. Neuron , 71, 278-290. [CrossRef] [PubMed] [Google Scholar]
  • Kuna, R.S., Girada, S.B., Asalla, S., Vallentyne, J., Maddika, S., Patterson, J.T., Smiley, D.L., DiMarchi, R.D., Mitra, P. (2013). Glucagon-like peptide-1 receptor-mediated endosomal cAMP generation promotes glucose-stimulated insulin secretion in pancreatic beta-cells. Am J Physiol Endocrinol Metab , 305, E161-170. [CrossRef] [PubMed] [Google Scholar]
  • Lawe, D.C., Patki, V., Heller-Harrison, R., Lambright, D., Corvera, S. (2000). The FYVE domain of early endosome antigen 1 is required for both phosphatidylinositol 3-phosphate and Rab5 binding. Critical role of this dual interaction for endosomal localization. J Biol Chem, 275, 3699-3705. [CrossRef] [Google Scholar]
  • Marchese, A., Paing, M.M., Temple, B.R., Trejo, J. (2008). G protein-coupled receptor sorting to endosomes and lysosomes. Annu Rev Pharmacol Toxicol , 48, 601-629. [Google Scholar]
  • Mullershausen, F., Zecri, F., Cetin, C., Billich, A., Guerini, D., Seuwen, K. (2009). Persistent signaling induced by FTY720-phosphate is mediated by internalized S1P1 receptors. Nat Chem Biol , 5, 428-434. [Google Scholar]
  • Rajagopal, S., Rajagopal, K., Lefkowitz, R.J. (2010). Teaching old receptors new tricks: biasing seven-transmembrane receptors. Nat Rev Drug Discov , 9, 373-386. [CrossRef] [PubMed] [Google Scholar]
  • Sorkin, A., von Zastrow, M. (2009). Endocytosis and signalling: intertwining molecular networks. Nat Rev Mol Cell Biol, 10, 609-622. [CrossRef] [PubMed] [Google Scholar]
  • Thomsen, A.R., Plouffe, B., Cahill, T.J., 3rd, Shukla, A.K., Tarrasch, J.T., Dosey, A.M., Kahsai, A.W., Strachan, R.T., Pani, B., Mahoney, J.P., Huang, L., Breton, B., Heydenreich, F.M., Sunahara, R.K., Skiniotis, G., Bouvier, M., Lefkowitz, R.J. (2016). GPCR-G Protein-beta-Arrestin Super-Complex Mediates Sustained G Protein Signaling. Cell, 166, 907-919. [Google Scholar]
  • Tsvetanova, N.G., von Zastrow, M. (2014). Spatial encoding of cyclic AMP signaling specificity by GPCR endocytosis. Nat Chem Biol , 10, 1061-1065. [Google Scholar]
  • Waser, B., Rehmann, R., Sanchez, C., Fourmy, D., Reubi, J.C. (2012). Glucose-dependent insulinotropic polypeptide receptors in most gastroenteropancreatic and bronchial neuroendocrine tumors. J Clin Endocrinol Metab, 97, 482-488. [CrossRef] [Google Scholar]
  • Wehbi, V.L., Stevenson, H.P., Feinstein, T.N., Calero, G., Romero, G., Vilardaga, J.P. (2013). Noncanonical GPCR signaling arising from a PTH receptor-arrestin-Gbetagamma complex. Proc Natl Acad Sci USA , 110, 1530-1535. [CrossRef] [Google Scholar]
  • Yaqub, T., Tikhonova, I.G., Lattig, J., Magnan, R., Laval, M., Escrieut, C., Boulègue, C., Hewage, C., Fourmy, D. (2010). Identification of determinants of glucose-dependent insulinotropic polypeptide receptor that interact with N-terminal biologically active region of the natural ligand. Mol Pharmacol, 77, 547-558. [CrossRef] [PubMed] [Google Scholar]
  • Yarwood, R.E., Imlach, W.L., Lieu, T., Veldhuis, N.A., Jensen, D.D., Klein Herenbrink, C., Aurelio, L., Cai, Z., Christie, M.J., Poole, D.P., Porter, C.J.H., McLean, P., Hicks, G.A., Geppetti, P., Halls, M.L., Canals, M., Bunnett, N.W. (2017). Endosomal signaling of the receptor for calcitonin gene-related peptide mediates pain transmission. Proc Natl Acad Sci USA, 114, 12309-12314. [CrossRef] [Google Scholar]
  • Zaccolo, M., Pozzan, T. (2002). Discrete microdomains with high concentration of cAMP in stimulated rat neonatal cardiac myocytes. Science , 295, 1711-1715. [Google Scholar]

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