Bee_2007_J.Biol.Chem_282_32471

Reference

Title : Functional analysis of transmembrane domain 2 of the M1 muscarinic acetylcholine receptor - Bee_2007_J.Biol.Chem_282_32471
Author(s) : Bee MS , Hulme EC
Ref : Journal of Biological Chemistry , 282 :32471 , 2007
Abstract :

Ala substitution scanning mutagenesis has been used to probe the functional role of amino acids in transmembrane (TM) domain 2 of the M1 muscarinic acetylcholine receptor, and of the highly conserved Asn43 in TM1. The mutation of Asn43, Asn61, and Leu64 caused an enhanced ACh affinity phenotype. Interpreted using a rhodopsin-based homology model, these results suggest the presence of a network of specific contacts between this group of residues and Pro415 and Tyr418 in the highly conserved NPXXY motif in TM7 that exhibit a similar mutagenic phenotype. These contacts may be rearranged or broken when ACh binds. D71A, like N414A, was devoid of signaling activity. We suggest that formation of a direct hydrogen bond between the highly conserved side chains of Asp71 and Asn414 may be a critical feature stabilizing the activated state of the M1 receptor. Mutation of Leu67, Ala70, and Ile74 also reduced the signaling efficacy of the ACh-receptor complex. The side chains of these residues are modeled as an extended surface that may help to orient and insulate the proposed hydrogen bond between Asp71 and Asn414. Mutation of Leu72, Gly75, and Met79 in the outer half of TM2 primarily reduced the expression of functional receptor binding sites. These residues may mediate contacts with TM1 and TM7 that are preserved throughout the receptor activation cycle. Thermal inactivation measurements confirmed that a reduction in structural stability followed the mutation of Met79 as well as Asp71.

PubMedSearch : Bee_2007_J.Biol.Chem_282_32471
PubMedID: 17823120

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Citations formats

Bee MS, Hulme EC (2007)
Functional analysis of transmembrane domain 2 of the M1 muscarinic acetylcholine receptor
Journal of Biological Chemistry 282 :32471

Bee MS, Hulme EC (2007)
Journal of Biological Chemistry 282 :32471