Back to Search Start Over

Gating of human TRPV3 in a lipid bilayer

Authors :
Grigory Maksaev
Zengqin Deng
Michael J. Rau
Hongzhen Hu
Zili Xie
James A. J. Fitzpatrick
Peng Yuan
Source :
Nature structural & molecular biology
Publication Year :
2020

Abstract

The transient receptor potential cation channel subfamily V member 3 (TRPV3) channel plays a critical role in skin physiology, and mutations in TRPV3 result in the development of a congenital skin disorder, Olmsted syndrome. Here we describe multiple cryo-electron microscopy structures of human TRPV3 reconstituted into lipid nanodiscs, representing distinct functional states during the gating cycle. The ligand-free, closed conformation reveals well-ordered lipids interacting with the channel and two physical constrictions along the ion-conduction pore involving both the extracellular selectivity filter and intracellular helix bundle crossing. Both the selectivity filter and bundle crossing expand upon activation, accompanied by substantial structural rearrangements at the cytoplasmic intersubunit interface. Transition to the inactivated state involves a secondary structure change of the pore-lining helix, which contains a π-helical segment in the closed and open conformations, but becomes entirely α-helical upon inactivation. Together with electrophysiological characterization, structures of TRPV3 in a lipid membrane environment provide unique insights into channel activation and inactivation mechanisms. Cryo-EM structures of TRPV3 in nanodiscs reveal lipids bound to the channel and unprecedented conformations of the selectivity filter and of the pore-lining helix S6, underscoring the importance of lipids for the channel structure.

Details

Language :
English
ISSN :
15459985 and 15459993
Volume :
27
Issue :
7
Database :
OpenAIRE
Journal :
Nature structural & molecular biology
Accession number :
edsair.doi.dedup.....207aa053cfb5eaf733282e6e3b7abbb0