Handling of intracellular K<sup>+</sup> determines voltage dependence of plasmalemmal monoamine transporter function.

Bhat, Shreyas; Niello, Marco; Schicker, Klaus; Pifl, Christian; Sitte, Harald H; Freissmuth, Michael; Sandtner, Walter · Elife · 2021

other · Level V

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Abstract

The concentrative power of the transporters for dopamine (DAT), norepinephrine (NET), and serotonin (SERT) is thought to be fueled by the transmembrane Na<sup>+</sup> gradient, but it is conceivable that they can also tap other energy sources, for example, membrane voltage and/or the transmembrane K<sup>+</sup> gradient. We have addressed this by recording uptake of endogenous substrates or the fluorescent substrate APP<sup>+</sup>(4-(4-dimethylamino)phenyl-1-methylpyridinium) under voltage control in cells expressing DAT, NET, or SERT. We have shown that DAT and NET differ from SERT in intracellular handling of K<sup>+</sup>. In DAT and NET, substrate uptake was voltage-dependent due to the transient nature of intracellular K<sup>+</sup> binding, which precluded K<sup>+</sup> antiport. SERT, however, antiports K<sup>+</sup> and achieves voltage-independent transport. Thus, there is a trade-off between maintaining constant uptake and harvesting membrane potential for concentrative power, which we conclude to occur due to subtle differences in the kinetics of co-substrate ion binding in closely related transporters.

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