Functional coupling between Piezo1 and TRPM4 influences the electrical activity of HL‐1 atrial myocytes

Abstract: The transient receptor potential melastatin 4 (TRPM4) channel contributes extensively to cardiac electrical activity, especially cardiomyocyte action potential formation. Mechanical stretch can induce changes in heart rate and rhythm, and the mechanosensitive channel Piezo1 is expressed in many cell types within the myocardium. Our previous study showed that TRPM4 and Piezo1 are closely co-localized in the t-tubules of ventricular cardiomyocytes and contribute to the Ca2+-dependent signalling cascade that underlies hypertrophy in response to mechanical pressure overload. However, there was no direct evidence showing that Piezo1 activation was related to TRPM4 activation in situ. In the present study, we employed the HL-1 mouse atrial myocyte-like cell line as an in vitro model to investigate whether Piezo1–TRPM4 coupling can affect action potential properties. We used the small molecule Piezo1 agonist, Yoda1, as a surrogate for mechanical stretch to activate Piezo1 and detected the action potential changes in HL-1 cells using FluoVolt, a fluorescent voltage sensitive dye. Our results demonstrate that Yoda1-induced activation of Piezo1 changes the action potential frequency in HL-1 cells. This change in action potential frequency is reduced by Piezo1 knockdown using small intefering RNA. Importantly knockdown or pharmacological inhibition of TRPM4 significantly affected the degree to which Yoda1-evoked Piezo1 activation influenced action potential frequency. Thus, the present study provides in vitro evidence of a functional coupling between Piezo1 and TRPM4 in a cardiomyocyte-like cell line. The coupling of a mechanosensitive Ca2+ permeable channel and a Ca2+-activated TRP channel probably represents a ubiquitous model for the role of TRP channels in mechanosensory transduction

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch
Notes
The journal of physiology. - 602, 18 (2024) , 4363-4386, ISSN: 1469-7793

Event
Veröffentlichung
(where)
Freiburg
(who)
Universität
(when)
2023
Creator
Guo, Yang
Cheng, Delfine
Yu, Ze‐Yan
Schiatti, Teresa
Chan, Andrea Y.
Hill, Adam P.
Peyronnet, Remi
Feneley, Michael P.
Cox, Charles D.
Martinac, Boris

DOI
10.1113/jp284474
URN
urn:nbn:de:bsz:25-freidok-2423034
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
15.08.2025, 7:36 AM CEST

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Associated

  • Guo, Yang
  • Cheng, Delfine
  • Yu, Ze‐Yan
  • Schiatti, Teresa
  • Chan, Andrea Y.
  • Hill, Adam P.
  • Peyronnet, Remi
  • Feneley, Michael P.
  • Cox, Charles D.
  • Martinac, Boris
  • Universität

Time of origin

  • 2023

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