The dopamine transporter antiports potassium to increase the uptake of dopamine.

Schmidt, Solveig G; Malle, Mette Galsgaard; Nielsen, Anne Kathrine; Bohr, Søren S-R; Pugh, Ciara F; Nielsen, Jeppe C; Poulsen, Ida H; Rand, Kasper D et al. · Nat Commun · 2022

basic_science · Level V

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Abstract

The dopamine transporter facilitates dopamine reuptake from the extracellular space to terminate neurotransmission. The transporter belongs to the neurotransmitter:sodium symporter family, which includes transporters for serotonin, norepinephrine, and GABA that utilize the Na<sup>+</sup> gradient to drive the uptake of substrate. Decades ago, it was shown that the serotonin transporter also antiports K<sup>+</sup>, but investigations of K<sup>+</sup>-coupled transport in other neurotransmitter:sodium symporters have been inconclusive. Here, we show that ligand binding to the Drosophila- and human dopamine transporters are inhibited by K<sup>+</sup>, and the conformational dynamics of the Drosophila dopamine transporter in K<sup>+</sup> are divergent from the apo- and Na<sup>+</sup>-states. Furthermore, we find that K<sup>+</sup> increases dopamine uptake by the Drosophila dopamine transporter in liposomes, and visualize Na<sup>+</sup> and K<sup>+</sup> fluxes in single proteoliposomes using fluorescent ion indicators. Our results expand on the fundamentals of dopamine transport and prompt a reevaluation of the impact of K<sup>+</sup> on other transporters in this pharmacologically important family.

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