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G protein-coupled receptors (GPCRs): advances in structures, mechanisms and drug discovery

428
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April 10, 2024
Published Date

Research Abstract & Technology Focus

AbstractG protein-coupled receptors (GPCRs), the largest family of human membrane proteins and an important class of drug targets, play a role in maintaining numerous physiological processes. Agonist or antagonist, orthosteric effects or allosteric effects, and biased signaling or balanced signaling, characterize the complexity of GPCR dynamic features. In this study, we first review the structural advancements, activation mechanisms, and functional diversity of GPCRs. We then focus on GPCR drug discovery by revealing the detailed drug-target interactions and the underlying mechanisms of orthosteric drugs approved by the US Food and Drug Administration in the past five years. Particularly, an up-to-date analysis is performed on available GPCR structures complexed with synthetic small-molecule allosteric modulators to elucidate key receptor-ligand interactions and allosteric mechanisms. Finally, we highlight how the widespread GPCR-druggable allosteric sites can guide structure- or mechanism-based drug design and propose prospects of designing bitopic ligands for the future therapeutic potential of targeting this receptor family.
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G protein-coupled receptors (GPCRs): advances in structures, mechanisms and drug discovery

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This literature focuses on: AbstractG protein-coupled receptors (GPCRs), the largest family of human membrane proteins and an important class of drug targets, play a role in maintaining numerous physiological processes. Agonist or antagonist, orthosteric effects or allosteri...

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Yes, highly correlated activity was mapped. An entry titled 'G protein-coupled receptors (GPCRs): advances in structures, mechanisms and drug discovery' discusses this: AbstractG protein-coupled receptors (GPCRs), the largest family of human membrane proteins and an important class of drug targets, play a role in m...

Are there commercial applications of 'G protein-coupled receptors (GPCRs): advances in structures, mechanisms and drug discovery' in GitHub?

Yes, highly correlated activity was mapped. An entry titled '[Feature]: Locked Gherkin DSL -- Bridging Shannon-Kolmogorov Gap for ~~Proven~~ Demonstrated Accuracy Gains' discusses this: > It's kind of a natural fit to describe what needs to be done to AI. Agree. And instinctively i've been interacting with AI using Gherkin habits....

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