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121 related items for PubMed ID: 22434108
1. RAMPs as drug targets. Sexton PM, Poyner DR, Simms J, Christopoulos A, Hay DL. Adv Exp Med Biol; 2012; 744():61-74. PubMed ID: 22434108 [Abstract] [Full Text] [Related]
3. Receptor activity-modifying proteins; multifunctional G protein-coupled receptor accessory proteins. Hay DL, Walker CS, Gingell JJ, Ladds G, Reynolds CA, Poyner DR. Biochem Soc Trans; 2016 Apr 15; 44(2):568-73. PubMed ID: 27068971 [Abstract] [Full Text] [Related]
4. Receptor Activity-Modifying Proteins (RAMPs): New Insights and Roles. Hay DL, Pioszak AA. Annu Rev Pharmacol Toxicol; 2016 Apr 15; 56():469-87. PubMed ID: 26514202 [Abstract] [Full Text] [Related]
5. RAMPs as allosteric modulators of the calcitonin and calcitonin-like class B G protein-coupled receptors. Pioszak AA, Hay DL. Adv Pharmacol; 2020 Apr 15; 88():115-141. PubMed ID: 32416865 [Abstract] [Full Text] [Related]
6. Structural insights into RAMP modification of secretin family G protein-coupled receptors: implications for drug development. Archbold JK, Flanagan JU, Watkins HA, Gingell JJ, Hay DL. Trends Pharmacol Sci; 2011 Oct 15; 32(10):591-600. PubMed ID: 21722971 [Abstract] [Full Text] [Related]
7. Elucidating the Interactome of G Protein-Coupled Receptors and Receptor Activity-Modifying Proteins. Kotliar IB, Lorenzen E, Schwenk JM, Hay DL, Sakmar TP. Pharmacol Rev; 2023 Jan 15; 75(1):1-34. PubMed ID: 36757898 [Abstract] [Full Text] [Related]
9. Identification of N-terminal receptor activity-modifying protein residues important for calcitonin gene-related peptide, adrenomedullin, and amylin receptor function. Qi T, Christopoulos G, Bailey RJ, Christopoulos A, Sexton PM, Hay DL. Mol Pharmacol; 2008 Oct 15; 74(4):1059-71. PubMed ID: 18593822 [Abstract] [Full Text] [Related]
10. Modulating receptor function through RAMPs: can they represent drug targets in themselves? Sexton PM, Poyner DR, Simms J, Christopoulos A, Hay DL. Drug Discov Today; 2009 Apr 15; 14(7-8):413-9. PubMed ID: 19150656 [Abstract] [Full Text] [Related]
12. The effects of C-terminal truncation of receptor activity modifying proteins on the induction of amylin receptor phenotype from human CTb receptors. Udawela M, Christopoulos G, Morfis M, Tilakaratne N, Christopoulos A, Sexton PM. Regul Pept; 2008 Jan 10; 145(1-3):65-71. PubMed ID: 17884192 [Abstract] [Full Text] [Related]
13. GPCRs globally coevolved with receptor activity-modifying proteins, RAMPs. Barbash S, Lorenzen E, Persson T, Huber T, Sakmar TP. Proc Natl Acad Sci U S A; 2017 Nov 07; 114(45):12015-12020. PubMed ID: 29078385 [Abstract] [Full Text] [Related]
16. G Protein-Coupled Receptors as Potential Intercellular Communication Mediators in Trypanosomatidae. Díaz E, Febres A, Giammarresi M, Silva A, Vanegas O, Gomes C, Ponte-Sucre A. Front Cell Infect Microbiol; 2022 Nov 07; 12():812848. PubMed ID: 35651757 [Abstract] [Full Text] [Related]
17. The expanding repertoire of receptor activity modifying protein (RAMP) function. Klein KR, Matson BC, Caron KM. Crit Rev Biochem Mol Biol; 2016 Nov 07; 51(1):65-71. PubMed ID: 26740457 [Abstract] [Full Text] [Related]
18. Multiplexed analysis of the secretin-like GPCR-RAMP interactome. Lorenzen E, Dodig-Crnković T, Kotliar IB, Pin E, Ceraudo E, Vaughan RD, Uhlèn M, Huber T, Schwenk JM, Sakmar TP. Sci Adv; 2019 Sep 07; 5(9):eaaw2778. PubMed ID: 31555726 [Abstract] [Full Text] [Related]
19. Complexing receptor pharmacology: modulation of family B G protein-coupled receptor function by RAMPs. Sexton PM, Morfis M, Tilakaratne N, Hay DL, Udawela M, Christopoulos G, Christopoulos A. Ann N Y Acad Sci; 2006 Jul 07; 1070():90-104. PubMed ID: 16888151 [Abstract] [Full Text] [Related]
20. Multiplexed mapping of the interactome of GPCRs with receptor activity-modifying proteins. Kotliar IB, Bendes A, Dahl L, Chen Y, Saarinen M, Ceraudo E, Dodig-Crnković T, Uhlén M, Svenningsson P, Schwenk JM, Sakmar TP. Sci Adv; 2024 Aug 02; 10(31):eado9959. PubMed ID: 39083597 [Abstract] [Full Text] [Related] Page: [Next] [New Search]