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  4. Cholinergic Stimulation Stabilizes trpm4 in the Plasma Membrane of Cortical Pyramidal Neurons
Details

Cholinergic Stimulation Stabilizes trpm4 in the Plasma Membrane of Cortical Pyramidal Neurons

Journal
Frontiers in Cell and Developmental Biology
ISSN
2296-634X
Date Issued
2024
Author(s)
Leiva-Salcedo, D  
Riquelme-Pacheco, D  
Peralta-Peralta, F  
Abstract
TRPM4 is a calcium activated non-selective cation channel, impermeable to Ca2+, in neurons it has been implicated in the regulation of the excitability and in the persistent firing. Cholinergic stimulation is also implicated in changes in excitability that leads neurons to an increased firing frequency, however it is not clear whether TRPM4 is involved in the cholinergic-induced increase in firing frequency. Here using a combination of patch clamp electrophysiology, Ca2+ imaging, immunofluorescence, fluorescence recovery after photobleaching (FRAP) and pharmacological approach, we demonstrate that carbachol (Cch) increases firing frequency, intracellular Ca2+ and that TRPM4 inhibition using 9-Ph and CBA reduces firing frequency and decreases the peak in intracellular Ca2+ induced by Cch in cortical pyramidal neurons in culture. Moreover, we determined that cholinergic stimulation reduces TRPM4 recycling and stabilizes TRPM4 in the plasma membrane. Together our results indicate that cholinergic stimulation increases firing in a TRPM4 dependent manner, and also increases the TRPM4 stability in the membrane, suggesting that TRPM4 is locked in microdomains in the membrane, possibly signaling or cytoskeleton proteins complexes. © © 2024 Leyton, Riquelme, Peralta, Navarro and Leiva-Salcedo.
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