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Updated: Jun 23, 2026

Yeast Luminometric and Xenopus Oocyte Electrophysiological Examinations of the Molecular Mechanosensitivity of TRPV4
Published on: December 31, 2013
Structural diversity of heat-sensing channel TRPV3 with Olmsted syndrome mutations
Jeffrey Khau1, Rutambhara Purohit1, Kirill D Nadezhdin1
1Department of Biochemistry and Molecular Biophysics, Columbia University, New York, NY, USA.
Abstract:
Mutations in TRPV3, a temperature-sensitive ion channel critical for skin physiology, cause severe genodermatosis called Olmsted syndrome (OS). Here we integrate single-channel recordings and cryo-EM to characterize five OS mutants. All exhibit reduced temperature sensitivity in the temperature range relevant to normal skin physiology and disrupt structural elements stabilizing non-conducting states, including vanilloid lipid coordination and S4-S5 linker-TRP helix contacts. Despite shared gain-of-function phenotype, the mutations cause different distributions of the TRPV3 closed, open, and inactivated states. One mutation expands the conformational ensemble with noncanonical two-fold-symmetrical states featuring dramatic domain swapping. Our findings highlight conserved TRP channel gating mechanisms and suggest that OS mutations alter TRPV3 function by triggering the conformational wave that mediates gating in wild-type channels. These insights establish a framework to decode genotype-structure-function relationships in TRP channelopathies and guide future therapeutic strategies.
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