Back to Search
Start Over
Piezo1 and BK Ca channels in human atrial fibroblasts: Interplay and remodelling in atrial fibrillation.
- Source :
-
Journal of molecular and cellular cardiology [J Mol Cell Cardiol] 2021 Sep; Vol. 158, pp. 49-62. Date of Electronic Publication: 2021 May 08. - Publication Year :
- 2021
-
Abstract
- Aims: Atrial Fibrillation (AF) is an arrhythmia of increasing prevalence in the aging populations of developed countries. One of the important indicators of AF is sustained atrial dilatation, highlighting the importance of mechanical overload in the pathophysiology of AF. The mechanisms by which atrial cells, including fibroblasts, sense and react to changing mechanical forces, are not fully elucidated. Here, we characterise stretch-activated ion channels (SAC) in human atrial fibroblasts and changes in SAC- presence and activity associated with AF.<br />Methods and Results: Using primary cultures of human atrial fibroblasts, isolated from patients in sinus rhythm or sustained AF, we combine electrophysiological, molecular and pharmacological tools to identify SAC. Two electrophysiological SAC- signatures were detected, indicative of cation-nonselective and potassium-selective channels. Using siRNA-mediated knockdown, we identified the cation-nonselective SAC as Piezo1. Biophysical properties of the potassium-selective channel, its sensitivity to calcium, paxilline or iberiotoxin (blockers), and NS11021 (activator), indicated presence of calcium-dependent 'big potassium channels' (BK <subscript>Ca</subscript> ). In cells from AF patients, Piezo1 activity and mRNA expression levels were higher than in cells from sinus rhythm patients, while BK <subscript>Ca</subscript> activity (but not expression) was downregulated. Both Piezo1-knockdown and removal of extracellular calcium from the patch pipette resulted in a significant reduction of BK <subscript>Ca</subscript> current during stretch. No co-immunoprecipitation of Piezo1 and BK <subscript>Ca</subscript> was detected.<br />Conclusions: Human atrial fibroblasts contain at least two types of ion channels that are activated during stretch: Piezo1 and BK <subscript>Ca</subscript> . While Piezo1 is directly stretch-activated, the increase in BK <subscript>Ca</subscript> activity during mechanical stimulation appears to be mainly secondary to calcium influx via SAC such as Piezo1. During sustained AF, Piezo1 is increased, while BK <subscript>Ca</subscript> activity is reduced, highlighting differential regulation of both channels. Our data support the presence and interplay of Piezo1 and BK <subscript>Ca</subscript> in human atrial fibroblasts in the absence of physical links between the two channel proteins.<br /> (Copyright © 2021. Published by Elsevier Ltd.)
- Subjects :
- Adult
Aged
Aged, 80 and over
Arrhythmia, Sinus pathology
Arrhythmia, Sinus surgery
Atrial Fibrillation pathology
Atrial Fibrillation surgery
Atrial Remodeling drug effects
Calcium metabolism
Cells, Cultured
Female
Gene Knockdown Techniques
Heart Atria pathology
Humans
Indoles pharmacology
Ion Channels genetics
Ion Transport drug effects
Ion Transport genetics
Large-Conductance Calcium-Activated Potassium Channel alpha Subunits agonists
Large-Conductance Calcium-Activated Potassium Channel alpha Subunits antagonists & inhibitors
Male
Middle Aged
Peptides pharmacology
Signal Transduction drug effects
Tetrazoles pharmacology
Thiourea analogs & derivatives
Thiourea pharmacology
Transfection
Arrhythmia, Sinus metabolism
Atrial Fibrillation metabolism
Atrial Remodeling genetics
Heart Atria metabolism
Ion Channels metabolism
Large-Conductance Calcium-Activated Potassium Channel alpha Subunits metabolism
Myofibroblasts metabolism
Signal Transduction genetics
Subjects
Details
- Language :
- English
- ISSN :
- 1095-8584
- Volume :
- 158
- Database :
- MEDLINE
- Journal :
- Journal of molecular and cellular cardiology
- Publication Type :
- Academic Journal
- Accession number :
- 33974928
- Full Text :
- https://doi.org/10.1016/j.yjmcc.2021.05.002