Acidic environments trigger intracellular H+-sensing FAK proteins to re-balance sarcolemmal acid–base transporters and auto-regulate cardiomyocyte pH
Cardiovascular Research

Abstract
In cardiomyocytes, acute disturbances to intracellular pH (pHi) are promptly corrected by a system of finely tuned sarcolemmal acid–base transporters. However, these fluxes become thermodynamically re-balanced in acidic environments, which inadvertently causes their set-point pHi to fall outside the physiological range. It is unclear whether an adaptive mechanism exists to correct this thermodynamic challenge, and return pHi to normal.
Following left ventricle cryo-damage, a diffuse pattern of low extracellular pH (pHe) was detected by acid-sensing pHLIP. Despite this, pHi measured in the beating heart (13C NMR) was normal. Myocytes had adapted to their acidic environment by reducing Cl−/
Cardiomyocytes fine-tune the expression of pHi-regulators so that pHi is at least 7.0. This autoregulatory feedback mechanism defines physiological pHi and protects it during pHe vulnerabilities.
Contributors

Abigail D Wilson
Author

Mark A Richards
Author

M Kate Curtis
Author

Mala Gunadasa-Rohling
Author

Stefania Monterisi
Author

Aminah A Loonat
Author

Jack J Miller
Author

Vicky Ball
Author

Andrew Lewis
Author

Damian J Tyler
Author

Anna Moshnikova
Author

Oleg A Andreev
Author

Yana K Reshetnyak
Author

Carolyn Carr
Author

Pawel Swietach
Author
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