Evolution-guided discovery and recoding of allosteric pathway specificity determinants in psychoactive bioamine receptors
- 12 April 2010
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 107 (17) , 7787-7792
- https://doi.org/10.1073/pnas.0914877107
Abstract
G protein-coupled receptors for dopamine and serotonin control signaling pathways targeted by many psychoactive drugs. A puzzle is how receptors with similar functions and nearly identical binding site structures, such as D2 dopamine receptors and 5-HT2A serotonin receptors, could evolve a mechanism that discriminates stringently in their cellular responses between endogenous neurotransmitters. We used the Difference Evolutionary Trace (Difference-ET) and residue-swapping to uncover two distinct sets of specificity-determining sequence positions. One at the ligand-binding pocket determines the relative affinities for these two ligands, and a distinct, surprising set of positions outside the binding site determines whether a bound ligand can trigger the conformational rearrangement leading to G protein activation. Thus one site specifies affinity while the other encodes a filter for efficacy. These findings demonstrate that allosteric pathways linking distant interactions via alternate conformational states enforce specificity independently of the ligand-binding site, such that either one may be rationally rekeyed to different ligands. The conversion of a dopamine receptor effectively into a serotonin receptor illustrates the plasticity of GPCR signaling during evolution, or in pathological states, and suggests new approaches to drug discovery, targeting both classes of sites.Keywords
This publication has 48 references indexed in Scilit:
- Role for the Regulator of G-Protein Signaling Homology Domain of G Protein-Coupled Receptor Kinases 5 and 6 in β2-Adrenergic Receptor and Rhodopsin PhosphorylationMolecular Pharmacology, 2010
- Evolutionary Trace Annotation of Protein Function in the Structural ProteomeJournal of Molecular Biology, 2009
- Functional Rescue of β1‐Adrenoceptor Dimerization and Trafficking by Pharmacological ChaperonesTraffic, 2009
- Evolutionary Trace Annotation Server: automated enzyme function prediction in protein structures using 3D templatesBioinformatics, 2009
- The 2.6 Angstrom Crystal Structure of a Human A2AAdenosine Receptor Bound to an AntagonistScience, 2008
- Structure of a β1-adrenergic G-protein-coupled receptorNature, 2008
- De-Orphaning the Structural Proteome through Reciprocal Comparison of Evolutionarily Important Structural FeaturesPLOS ONE, 2008
- Ligand-Stabilized Conformational States of Human β2 Adrenergic Receptor: Insight into G-Protein-Coupled Receptor ActivationBiophysical Journal, 2008
- High-Resolution Crystal Structure of an Engineered Human β 2 -Adrenergic G Protein–Coupled ReceptorScience, 2007
- How many drug targets are there?Nature Reviews Drug Discovery, 2006