| Literature DB >> 29323279 |
Taylor E T Hughes1, David T Lodowski1,2, Kevin W Huynh1,3, Aysenur Yazici4, John Del Rosario4, Abhijeet Kapoor5, Sandip Basak6, Amrita Samanta1,6, Xu Han1, Sudha Chakrapani6, Z Hong Zhou3, Marta Filizola5, Tibor Rohacs4, Seungil Han7, Vera Y Moiseenkova-Bell8,9,10.
Abstract
The transient receptor potential vanilloid 5 (TRPV5) channel is a member of the transient receptor potential (TRP) channel family, which is highly selective for Ca2+, that is present primarily at the apical membrane of distal tubule epithelial cells in the kidney and plays a key role in Ca2+ reabsorption. Here we present the structure of the full-length rabbit TRPV5 channel as determined using cryo-EM in complex with its inhibitor econazole. This structure reveals that econazole resides in a hydrophobic pocket analogous to that occupied by phosphatidylinositides and vanilloids in TRPV1, thus suggesting conserved mechanisms for ligand recognition and lipid binding among TRPV channels. The econazole-bound TRPV5 structure adopts a closed conformation with a distinct lower gate that occludes Ca2+ permeation through the channel. Structural comparisons between TRPV5 and other TRPV channels, complemented with molecular dynamics (MD) simulations of the econazole-bound TRPV5 structure, allowed us to gain mechanistic insight into TRPV5 channel inhibition by small molecules.Entities:
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Year: 2018 PMID: 29323279 PMCID: PMC5951624 DOI: 10.1038/s41594-017-0009-1
Source DB: PubMed Journal: Nat Struct Mol Biol ISSN: 1545-9985 Impact factor: 18.361