Title : Diverse GPCRs exhibit conserved water networks for stabilization and activation.

Pub. Date : 2019 Feb 19

PMID : 30728297






4 Functional Relationships(s)
Download
Sentence
Compound Name
Protein Name
Organism
1 Using atomic-level simulations of diverse GPCRs, we show that most of the water molecules in GPCR crystal structures are highly mobile. Water vomeronasal 1 receptor 17 pseudogene Homo sapiens
2 Comparative analysis of GPCR crystal structures independently confirms the striking conservation of water-mediated interaction networks. Water vomeronasal 1 receptor 17 pseudogene Homo sapiens
3 These conserved water-mediated interactions near the G protein-coupling region, along with diverse water-mediated interactions with extracellular ligands, have direct implications for structure-based drug design and GPCR engineering. Water vomeronasal 1 receptor 17 pseudogene Homo sapiens
4 These conserved water-mediated interactions near the G protein-coupling region, along with diverse water-mediated interactions with extracellular ligands, have direct implications for structure-based drug design and GPCR engineering. Water vomeronasal 1 receptor 17 pseudogene Homo sapiens