Structural mechanism of heat-induced opening of a temperature-sensitive TRP channel

KD Nadezhdin, A Neuberger, YA Trofimov… - Nature structural & …, 2021 - nature.com
KD Nadezhdin, A Neuberger, YA Trofimov, NA Krylov, V Sinica, N Kupko, V Vlachova…
Nature structural & molecular biology, 2021nature.com
Numerous physiological functions rely on distinguishing temperature through temperature-
sensitive transient receptor potential channels (thermo-TRPs). Although the function of
thermo-TRPs has been studied extensively, structural determination of their heat-and cold-
activated states has remained a challenge. Here, we present cryo-EM structures of the
nanodisc-reconstituted wild-type mouse TRPV3 in three distinct conformations: closed, heat-
activated sensitized and open states. The heat-induced transformations of TRPV3 are …
Abstract
Numerous physiological functions rely on distinguishing temperature through temperature-sensitive transient receptor potential channels (thermo-TRPs). Although the function of thermo-TRPs has been studied extensively, structural determination of their heat- and cold-activated states has remained a challenge. Here, we present cryo-EM structures of the nanodisc-reconstituted wild-type mouse TRPV3 in three distinct conformations: closed, heat-activated sensitized and open states. The heat-induced transformations of TRPV3 are accompanied by changes in the secondary structure of the S2-S3 linker and the N and C termini and represent a conformational wave that links these parts of the protein to a lipid occupying the vanilloid binding site. State-dependent differences in the behavior of bound lipids suggest their active role in thermo-TRP temperature-dependent gating. Our structural data, supported by physiological recordings and molecular dynamics simulations, provide an insight for understanding the molecular mechanism of temperature sensing.
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