Regulation of central Na+ detection requires the cooperative action of the Nax channel and α1 isoform of Na+/K+-ATPase in the Na+-sensor neuronal population

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Abstract

The median preoptic nucleus (MnPO) holds a strategic position in the hypothalamus. It is adjacent to the third ventricle; hence, it can directly access the ionic composition of the CSF. MnPO neurons play a critical role in hydromineral homeostasis regulation by acting as central sensors of extracellular Na+ concentration ([Na+]ext). The mechanism underlying Na+ sensing involves the atypical Na+ channel, NaX. Here we sought to determine whether Na+ influx in Na+ sensors is actively regulated via interaction with other membrane proteins involved in cellular Na+ homeostasis, such as Na+/K+-ATPase. The Na+/K+-ATPase role was investigated using patch-clamp recordings in rat MnPO dissociated neurons. Na+ current evoked with hypernatriuric solution was diminished in the absence of ATP/GTP, indicating that Na+/K+-ATPase play a central role in [Na+]ext detection. Specific blockers ofα1 and α3 isoforms of Na+/K+-ATPase, ouabain or strophanthidin, inhibited this Na+ current. However,strophanthidin, which selectively blocks the α1 isoform, was more effective in blocking Na+ current, suggesting that the Na+/K+-ATPase-α1 isoform is specifically involved in [Na+]ext detection. Although strophanthidin did not alter either themembraneresistance or theNa+reversal potential, the conductance and the permeability of the NaX channel decreased significantly. Our results suggest that Na+/K+-ATPase interacts with the NaX channel and regulates the high [Na+]ext-evoked Na+ current via influencing the Na+ influx rate. This study describes a novel intracellular regulatory pathway of [Na+]ext detection inMnPOneurons.The α1 isoform ofNa+/K+-ATPase acts as a direct regulatory partner of the NaX channel and influences Na+influx via controlling the Na+permeability of the channel. © 2013 the authors.

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Berret, E., Nehmé, B., Henry, M., Toth, K., Drolet, G., & Mouginot, D. (2013). Regulation of central Na+ detection requires the cooperative action of the Nax channel and α1 isoform of Na+/K+-ATPase in the Na+-sensor neuronal population. Journal of Neuroscience, 33(7), 3067–3078. https://doi.org/10.1523/JNEUROSCI.4801-12.2013

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