Related Experiment Video
Updated: Sep 12, 2025

A Kinetic Fluorescence-based Ca2+ Mobilization Assay to Identify G Protein-coupled Receptor Agonists, Antagonists, and Allosteric Modulators
Published on: February 20, 2018
Efficient Characterization of GPCRs Allosteric Modulation: Application to the Rational Design of De Novo S1PR1
Alejandro Cruz1,2, Arieh Warshel1
1Department of Chemistry, University of Southern California, Los Angeles, California 90089-1062, United States.
Abstract:
G-protein-coupled receptors (GPCRs) constitute the largest superfamily of integral membrane proteins in the human genome that mediate most transmembrane signaling processes. Malfunction of these signaling processes is related to many human pathologies (Parkinson's, heart diseases, etc.), causing GPCRs to be the largest family of druggable proteins. Traditionally, GPCRs were targeted by orthosteric ligands. However, this regulation usually causes side effects, provoking many GPCRs-associated pathologies to remain without an effective treatment. Allosteric regulation offers a promising alternative to circumvent this problem, and consequently, comprehending its details is of utmost importance. For this reason, we developed in the present work a methodology to study the allosteric modulation in a comprehensive way. Specifically, this methodology allows calculating the free energy profiles (ΔGtotal) for activation processes of GPCRs and their derived complexes combining the usage of targeted molecular dynamics (TMD) simulations to generate the intermediate structures of a given activation process, with the protein-dipole Langevin-dipole (PDLD) method within the linear response approximation (LRA) framework (PDLD/S-LRA-2000) and our refined coarse-grained (CG) model for GPCRs to calculate the binding and conformational free energy contributions (ΔGconf, ΔGbind), respectively, which take into account the cellular membrane effects by an implicit membrane. Sphingosine 1-phosphate receptor 1 (S1PR1) has been chosen as a case study due to its available data for benchmark purposes. Apart from validating our developed methodology, the conducted S1PR1 study has partially filled its knowledge gap regarding allosteric modulation and has allowed rational design of a de novo pure positive allosteric modulator for one of its prospective allosteric cavities according to our calculations. The methodology presented in this paper provides a very useful tool to study the GPCRs allosteric modulation, and the GPCRs activation processes in general, which will hopefully encourage a more thorough exploration of the topic.
Related Concept Videos
G Protein-coupled Receptors
GPCRs are also called heptahelical, 7TM, or serpentine receptors, and consist of seven (H1-H7) transmembrane alpha-helices that span the bilayer to form a cylindrical core. The transmembrane helices are connected by three extracellular loops and three...
GPCRs Regulate Adenylyl Cylase Activity
Transducer Mechanism: G Protein–Coupled Receptors
GPCRs are also called heptahelical,...
Allosteric Regulation
The Two-State Receptor Model
The binding affinity of a drug determines its interaction with...
GPCR Desensitization

