A pentameric TRPV3 channel with a dilated pore Journal Article


Authors: Lansky, S.; Betancourt, J. M.; Zhang, J.; Jiang, Y.; Kim, E. D.; Paknejad, N.; Nimigean, C. M.; Yuan, P.; Scheuring, S.
Article Title: A pentameric TRPV3 channel with a dilated pore
Abstract: Transient receptor potential (TRP) channels are a large, eukaryotic ion channel superfamily that control diverse physiological functions, and therefore are attractive drug targets 1–5. More than 210 structures from more than 20 different TRP channels have been determined, and all are tetramers 4. Despite this wealth of structures, many aspects concerning TRPV channels remain poorly understood, including the pore-dilation phenomenon, whereby prolonged activation leads to increased conductance, permeability to large ions and loss of rectification 6,7. Here, we used high-speed atomic force microscopy (HS-AFM) to analyse membrane-embedded TRPV3 at the single-molecule level and discovered a pentameric state. HS-AFM dynamic imaging revealed transience and reversibility of the pentamer in dynamic equilibrium with the canonical tetramer through membrane diffusive protomer exchange. The pentamer population increased upon diphenylboronic anhydride (DPBA) addition, an agonist that has been shown to induce TRPV3 pore dilation. On the basis of these findings, we designed a protein production and data analysis pipeline that resulted in a cryogenic-electron microscopy structure of the TRPV3 pentamer, showing an enlarged pore compared to the tetramer. The slow kinetics to enter and exit the pentameric state, the increased pentamer formation upon DPBA addition and the enlarged pore indicate that the pentamer represents the structural correlate of pore dilation. We thus show membrane diffusive protomer exchange as an additional mechanism for structural changes and conformational variability. Overall, we provide structural evidence for a non-canonical pentameric TRP-channel assembly, laying the foundation for new directions in TRP channel research. © 2023, The Author(s), under exclusive licence to Springer Nature Limited.
Keywords: unclassified drug; protein assembly; diffusion; protein; drug delivery systems; membrane protein; data analysis; molecular analysis; protein subunit; protein subunits; protein structure; drug delivery system; cryoelectron microscopy; permeability; drug; membrane; chemical reaction kinetics; atomic force microscopy; reaction kinetics; acid anhydride; anhydrides; chemical parameters; article; transient receptor potential channel 3; equilibrium; diphenylboronic anhydride; high speed atomic force microscopy; membrane diffusive protomer exchange; pentamerization
Journal Title: Nature
Volume: 621
Issue: 7977
ISSN: 0028-0836
Publisher: Nature Publishing Group  
Date Published: 2023-09-07
Start Page: 206
End Page: 214
Language: English
DOI: 10.1038/s41586-023-06470-1
PUBMED: 37648856
PROVIDER: scopus
PMCID: PMC10584365
DOI/URL:
Notes: Article -- Source: Scopus
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