G protein-coupled receptors (GPCRs) are key regulators of cellular signaling and major drug targets. Although X-ray crystallography and cryo-electron microscopy have provided high-resolution receptor structures, these static snapshots capture only a fraction of the conformational states underlying GPCR function. Molecular dynamics (MD) simulations complement experimental structures by enabling the mapping of receptor conformational landscapes and their relationship to functional outcomes. Large-scale simulation resources such as GPCRmd allow systematic exploration and comparison of GPCR motions across receptors and ligands. MD studies reveal transient conformational states, cryptic binding pockets, lipid- and water-mediated interactions, and allosteric communication networks that shape ligand recognition and the impact of signaling bias.
Adrian García-Recio, Alejandro Peralta-García, Anna Korda et al.· Current Opinion in Structura...· 0 citations
This Primer outlines experimental and computational workflows tailored to peptide–GPCR interactions, including in silico peptide mining, deorphanization strategies, library-based screening platforms, modern pathway-resolved biosensor assays, and approaches for peptide stabilization and optimization strategies to address their pharmacokinetic limitations.
J. Hermes, Marin Matic, H. Yeung et al.· Nature Reviews Methods Prime...· 0 citations
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