Functional domains of the mouse beta(3)-adrenoceptor associated with differential G-protein coupling
Title | Functional domains of the mouse beta(3)-adrenoceptor associated with differential G-protein coupling |
Publication Type | Journal Article |
Year of Publication | 2007 |
Authors | Sato, M, Hutchinson DS, Evans BA, Summers RJ |
Journal | Biochem Soc Trans |
Volume | 35 |
Pagination | 1035-7 |
Date Published | Nov |
ISBN Number | 0300-5127 (Print)0300-5127 (Linking) |
Accession Number | 17956271 |
Keywords | Alternative Splicing, Amino Acid Motifs, Amino Acid Sequence, Animals, GTP-Binding Proteins/*metabolism, Mice, Protein Binding, Protein Isoforms/chemistry/genetics/*metabolism, Receptors, Adrenergic, beta-3/chemistry/genetics/*metabolism, RNA, Messenger/genetics, Signal Transduction |
Abstract | Localization of G-protein-coupled receptors within membrane microdomains is associated with differential signalling pathway activation. We have shown that two mouse beta(3)-AR (beta(3)-adrenoceptor) isoforms encoded by alternatively spliced mRNAs differ in their signalling properties; the beta(3a)-AR couples only with G(s), whereas the beta(3b)-AR couples with both G(s) and G(i). Our previous studies indicated that the beta(3a)-AR is restrained from coupling with G(i) due to the interaction of residues in the C-terminus with other protein(s). We have investigated the hypothesis that the beta(3a)-AR interacts with caveolin. Disruption of caveolae in CHO (Chinese-hamster ovary)-K1 cells expressing wild-type beta(3a)-ARs with filipin III, or mutation of a putative caveolin-binding site in the beta(3a)-AR, causes cAMP accumulation to become PTX (pertussis toxin)-sensitive. Likewise, filipin treatment of mouse brown adipocytes that express endogenous beta(3a)-ARs produces a substantial reduction in agonist-stimulated cAMP production that is rescued by pre-treatment with PTX. These studies suggest that beta(3a)-ARs may be restricted to caveolae and that localization of the receptor may play a specific role in G-protein-mediated signalling. |
URL | http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&list_uids=17956271 |