Opioids represent widely prescribed and abused medications, although their signal transduction mechanisms are not well understood. Here we present the 1.8âà high-resolution crystal structure of the human δ-opioid receptor (δ-OR), revealing the presence and fundamental role of a sodium ion in mediating allosteric control of receptor functional selectivity and constitutive activity. The distinctive δ-OR sodium ion site architecture is centrally located in a polar interaction network in the seven-transmembrane bundle core, with the sodium ion stabilizing a reduced agonist affinity state, and thereby modulating signal transduction. Site-directed mutagenesis and functional studies reveal that changing the allosteric sodium site residue Asnâ131 to an alanine or a valine augments constitutive β-arrestin-mediated signalling. Asp95Ala, Asn310Ala and Asn314Ala mutations transform classical δ-opioid antagonists such as naltrindole into potent β-arrestin-biased agonists. The data establish the molecular basis for allosteric sodium ion control in opioid signalling, revealing that sodium-coordinating residues act as 'efficacy switches' at a prototypic G-protein-coupled receptor.
Molecular control of δ-opioid receptor signalling.
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作者:Fenalti Gustavo, Giguere Patrick M, Katritch Vsevolod, Huang Xi-Ping, Thompson Aaron A, Cherezov Vadim, Roth Bryan L, Stevens Raymond C
| 期刊: | Nature | 影响因子: | 48.500 |
| 时间: | 2014 | 起止号: | 2014 Feb 13; 506(7487):191-6 |
| doi: | 10.1038/nature12944 | ||
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