EMD-32724

Single-particle
2.52 Å
EMD-32724 Deposition: 26/01/2022
Map released: 22/06/2022
Last modified: 23/10/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-32724

Mouse TRPM8 in lipid nanodiscs in the presence of calcium and icilin

EMD-32724

Single-particle
2.52 Å
EMD-32724 Deposition: 26/01/2022
Map released: 22/06/2022
Last modified: 23/10/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Mus musculus
Sample: Mouse TRPM8 in lipid nanodiscs in the presence of calcium and icilin
Fitted models: 7wre (Avg. Q-score: 0.471)

Deposition Authors: Zhao C, Xie Y
Structures of a mammalian TRPM8 in closed state.
Zhao C, Xie Y , Xu L, Ye F , Xu X, Yang W, Yang F , Guo J
(2022) Nat Commun , 13 , 3113 - 3113
PUBMED: 35662242
DOI: doi:10.1038/s41467-022-30919-y
ISSN: 2041-1723
Abstract:
Transient receptor potential melastatin 8 (TRPM8) channel is a Ca2+-permeable non-selective cation channel that acts as the primary cold sensor in humans. TRPM8 is also activated by ligands such as menthol, icilin, and phosphatidylinositol 4,5-bisphosphate (PIP2), and desensitized by Ca2+. Here we have determined electron cryo-microscopy structures of mouse TRPM8 in the absence of ligand, and in the presence of Ca2+ and icilin at 2.5-3.2 Å resolution. The ligand-free state TRPM8 structure represents the full-length structure of mammalian TRPM8 channels with a canonical S4-S5 linker and the clearly resolved selectivity filter and outer pore loop. TRPM8 has a short but wide selectivity filter which may account for its permeability to hydrated Ca2+. Ca2+ and icilin bind in the cytosolic-facing cavity of the voltage-sensing-like domain of TRPM8 but induce little conformational change. All the ligand-bound TRPM8 structures adopt the same closed conformation as the ligand-free structure. This study reveals the overall architecture of mouse TRPM8 and the structural basis for its ligand recognition.