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Piezo1 ion channels are capable of conformational signaling.

Publication ,  Journal Article
Lewis, AH; Cronin, ME; Grandl, J
Published in: bioRxiv
May 29, 2024

Piezo1 is a mechanically activated ion channel that senses forces with short latency and high sensitivity. Piezos undergo large conformational changes, induce far-reaching deformation onto the membrane, and modulate the function of two-pore potassium (K2P) channels. Taken together, this led us to hypothesize that Piezos may be able to signal their conformational state to other nearby proteins. Here, we use chemical control to acutely restrict Piezo1 conformational flexibility and show that Piezo1 conformational changes, but not ion permeation through it, are required for modulating the K2P channel TREK1. Super-resolution imaging and stochastic simulations further reveal that both channels do not co-localize, which implies that modulation is not mediated through direct binding interactions; however, at high Piezo1 densities, most TREK1 channels are within the predicted Piezo1 membrane footprint, suggesting the footprint may underlie conformational signaling. We speculate that physiological roles originally attributed to Piezo1 ionotropic function could, alternatively, involve conformational signaling.

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Published In

bioRxiv

DOI

EISSN

2692-8205

Publication Date

May 29, 2024

Location

United States
 

Citation

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Lewis, A. H., Cronin, M. E., & Grandl, J. (2024). Piezo1 ion channels are capable of conformational signaling. BioRxiv. https://doi.org/10.1101/2024.05.28.596257
Lewis, Amanda H., Marie E. Cronin, and Jörg Grandl. “Piezo1 ion channels are capable of conformational signaling.BioRxiv, May 29, 2024. https://doi.org/10.1101/2024.05.28.596257.
Lewis AH, Cronin ME, Grandl J. Piezo1 ion channels are capable of conformational signaling. bioRxiv. 2024 May 29;
Lewis, Amanda H., et al. “Piezo1 ion channels are capable of conformational signaling.BioRxiv, May 2024. Pubmed, doi:10.1101/2024.05.28.596257.
Lewis AH, Cronin ME, Grandl J. Piezo1 ion channels are capable of conformational signaling. bioRxiv. 2024 May 29;

Published In

bioRxiv

DOI

EISSN

2692-8205

Publication Date

May 29, 2024

Location

United States