Proceedings of the National Academy of Sciences · 1997 · 205 citations · 27 references
Molecular BiologyMolecular PharmacologyProtein FoldingPotential RoleActivation ProcessMolecular PhysiologyProtein FunctionBiochemistryG Protein-coupled ReceptorD142 SiteReceptor (Biochemistry)Receptor MutantsPharmacologySignal TransductionFunctional SelectivityNatural SciencesPhysiologyNeuropeptide ReceptorSystems BiologyMedicine
In this study, a quantitative approach was used to investigate the role of D142, which belongs to the highly conserved E/DRY sequence, in the activation process of the alpha1B-adrenergic receptor (alpha1B-AR). Experimental and computer-simulated mutagenesis were performed by substituting all possible natural amino acids at the D142 site. The resulting congeneric set of proteins together with the finding that all the receptor mutants show various levels of constitutive (agonist-independent) activity enabled us to quantitatively analyze the relationships between structural/dynamic features and the extent of constitutive activity. Our results suggest that the hydrophobic/hydrophilic character of D142, which could be regulated by protonation/deprotonation of this residue, is an important modulator of the transition between the inactive (R) and active (R*) state of the alpha1B-AR. Our study represents an example of quantitative structure-activity relationship analysis of the activation process of a G protein-coupled receptor.
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Solvent-Accessible Surfaces of Proteins and Nucleic Acids
Michael L. Connolly · Science · 1983 · 2.7K citations
Protein Chemistry, Engineering, Three-dimensional Contour +15
Amino Acid Difference Formula to Help Explain Protein Evolution
Richard Grantham · Science · 1974 · 2.4K citations
Explain Protein Evolution, Protein Chemistry, Biochemistry +12