Literature DB >> 9016347

Substitution of charged amino acid residues in transmembrane regions 6 and 7 affect ligand binding and signal transduction of the prostaglandin EP3 receptor.

L Audoly1, R M Breyer.   

Abstract

Expression of the rabbit EP3 receptor isoform 77A in COS1 and HEK293tsA201 cells demonstrated specific binding of [3H]prostaglandin (PG)E2 and receptor-evoked decreases in intracellular cAMP levels. Competition binding with PGE2, PGE2 methyl ester, misoprostol-free acid, misoprostol, and sulprostone suggested that a negative charge at the C1 position is essential for high affinity ligand binding and that the charge at this position is more important than steric bulk. Charged amino acid residues within the transmembrane (TM) domains of the receptor were mutated, and the resulting receptor proteins were analyzed for the effects of these mutations on receptor structure and/or function. Positively charged TM residues are candidates for interaction with the C1 carboxylic acid moiety of prostanoid ligands. Substitution of R329 (TM VII) with either alanine or glutamate resulted in a loss of both detectable [3H]PGE2 binding and receptor activation despite expression of the receptor protein as determined by immunoprecipitation and immunofluorescence. Substitution of K300 (TM V) with alanine had no effect on binding or signal transduction. Substitution of the conserved aspartic acid at position 338 (TM VII) with alanine caused a loss of detectable receptor-evoked inhibition of cAMP generation, although this mutation did not appreciably affect ligand binding. These studies suggest that R329 but not K300 is a key determinant in receptor/ligand interaction. Furthermore, D338 plays a critical role in G1 activation by the EP3 receptor.

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Year:  1997        PMID: 9016347     DOI: 10.1124/mol.51.1.61

Source DB:  PubMed          Journal:  Mol Pharmacol        ISSN: 0026-895X            Impact factor:   4.436


  10 in total

1.  Requirement of N-glycosylation of the prostaglandin E2 receptor EP3beta for correct sorting to the plasma membrane but not for correct folding.

Authors:  U Böer; F Neuschäfer-Rube; U Möller; G P Püschel
Journal:  Biochem J       Date:  2000-09-15       Impact factor: 3.857

2.  Prediction of the 3D structure and dynamics of human DP G-protein coupled receptor bound to an agonist and an antagonist.

Authors:  Youyong Li; Fangqiang Zhu; Nagarajan Vaidehi; William A Goddard; Felix Sheinerman; Stephan Reiling; Isabelle Morize; Lan Mu; Keith Harris; Ali Ardati; Abdelazize Laoui
Journal:  J Am Chem Soc       Date:  2007-08-11       Impact factor: 15.419

3.  Role of the ERC motif in the proximal part of the second intracellular loop and the C-terminal domain of the human prostaglandin F2alpha receptor (hFP-R) in G-protein coupling control.

Authors:  Andrea Pathe-Neuschäfer-Rube; Frank Neuschäfer-Rube; Gerhard P Püschel
Journal:  Biochem J       Date:  2005-05-15       Impact factor: 3.857

4.  Evidence for the presence of a critical disulfide bond in the mouse EP3γ receptor.

Authors:  Jason D Downey; Charles R Sanders; Richard M Breyer
Journal:  Prostaglandins Other Lipid Mediat       Date:  2011-01-12       Impact factor: 3.072

5.  Identification by site-directed mutagenesis of amino acids contributing to ligand-binding specificity or signal transduction properties of the human FP prostanoid receptor.

Authors:  Frank Neuschäfer-Rube; Eva Engemaier; Sina Koch; Ulrike Böer; Gerhard P Püschel
Journal:  Biochem J       Date:  2003-04-15       Impact factor: 3.857

6.  Prostaglandin E2 inhibits renal collecting duct Na+ absorption by activating the EP1 receptor.

Authors:  Y Guan; Y Zhang; R M Breyer; B Fowler; L Davis; R L Hébert; M D Breyer
Journal:  J Clin Invest       Date:  1998-07-01       Impact factor: 14.808

Review 7.  Molecular mechanisms of target recognition by lipid GPCRs: relevance for cancer.

Authors:  M T M van Jaarsveld; J M Houthuijzen; E E Voest
Journal:  Oncogene       Date:  2015-12-07       Impact factor: 9.867

8.  Extracellular loop II modulates GTP sensitivity of the prostaglandin EP3 receptor.

Authors:  Chandramohan Natarajan; Aaron N Hata; Heidi E Hamm; Roy Zent; Richard M Breyer
Journal:  Mol Pharmacol       Date:  2012-10-18       Impact factor: 4.436

9.  Prediction of the Human EP1 Receptor Binding Site by Homology Modeling and Molecular Dynamics Simulation.

Authors:  Behnoush Zare; Armin Madadkar-Sobhani; Siavoush Dastmalchi; Masoud Mahmoudian
Journal:  Sci Pharm       Date:  2011-08-07

10.  Crystal structure of misoprostol bound to the labor inducer prostaglandin E2 receptor.

Authors:  Martin Audet; Kate L White; Billy Breton; Barbara Zarzycka; Gye Won Han; Yan Lu; Cornelius Gati; Alexander Batyuk; Petr Popov; Jeffrey Velasquez; David Manahan; Hao Hu; Uwe Weierstall; Wei Liu; Wenqing Shui; Vsevolod Katritch; Vadim Cherezov; Michael A Hanson; Raymond C Stevens
Journal:  Nat Chem Biol       Date:  2018-12-03       Impact factor: 15.040

  10 in total

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