Literature DB >> 1657592

Site-directed mutagenesis of the m3 muscarinic receptor: identification of a series of threonine and tyrosine residues involved in agonist but not antagonist binding.

J Wess1, D Gdula, M R Brann.   

Abstract

The hydrophobic core of all muscarinic receptors contains several conserved serine, threonine and tyrosine residues, most of which do not occur in any other G-protein coupled receptor. Since these amino acids can serve as potential hydrogen bond donors or acceptors, we have tested the hypothesis that they may be involved in the selective binding of muscarinic ligands. To eliminate the OH groups present in these residues, we have created nine single point mutations in the rat m3 muscarinic receptor by converting serine and threonine residues to alanine, and tyrosine residues to phenylalanine. The ligand binding and functional properties of these receptors were studied after transient expression in COS-7 cells. Six out of the nine mutant receptors (threonine and tyrosine mutations) showed strong reductions (approximately 10- to 40-fold lower than the wild-type receptor) in agonist binding affinities and reduced potencies in agonist-induced activation of phosphoinositide hydrolysis. Their antagonist binding properties, however, were similar to those of the wild-type m3 receptor. Despite their location on different transmembrane domains (III, V, VI and VII), all six mutations are positioned at a similar level (one to two helical turns away from the membrane surface) within the outer leaflet of the plasma membrane and may thus define the plain in which muscarinic agonists (but not antagonists) bind to their target receptor.

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Year:  1991        PMID: 1657592      PMCID: PMC453107          DOI: 10.1002/j.1460-2075.1991.tb04941.x

Source DB:  PubMed          Journal:  EMBO J        ISSN: 0261-4189            Impact factor:   11.598


  31 in total

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Journal:  FEBS Lett       Date:  1989-11-20       Impact factor: 4.124

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6.  Chimeric m2/m3 muscarinic receptors: role of carboxyl terminal receptor domains in selectivity of ligand binding and coupling to phosphoinositide hydrolysis.

Authors:  J Wess; T I Bonner; M R Brann
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9.  Antagonist binding profiles of five cloned human muscarinic receptor subtypes.

Authors:  F Dörje; J Wess; G Lambrecht; R Tacke; E Mutschler; M R Brann
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10.  Distinct sequence elements control the specificity of G protein activation by muscarinic acetylcholine receptor subtypes.

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  25 in total

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8.  Modelling of the binding site of the human m1 muscarinic receptor: experimental validation and refinement.

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9.  Delineation of a region in the B2 bradykinin receptor that is essential for high-affinity agonist binding.

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10.  Stereochemistry of charged nitrogen-aromatic interactions and its involvement in ligand-receptor binding.

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