From the Department of Biomedical Sciences, University of North Dakota School of Medicine and Health Sciences, Grand Forks, North Dakota 58201 and.
the Departments of Psychiatry and.
J Biol Chem. 2017 Nov 17;292(46):19066-19075. doi: 10.1074/jbc.M117.787002. Epub 2017 Sep 22.
The dopamine transporter (DAT) controls the spatial and temporal dynamics of dopamine neurotransmission through reuptake of extracellular transmitter and is a target for addictive compounds such as cocaine, amphetamine (AMPH), and methamphetamine (METH). Reuptake is regulated by kinase pathways and drug exposure, allowing for fine-tuning of clearance in response to specific conditions, and here we examine the impact of transporter ligands on DAT residue Thr-53, a proline-directed phosphorylation site previously implicated in AMPH-stimulated efflux mechanisms. Our findings show that Thr-53 phosphorylation is stimulated in a transporter-dependent manner by AMPH and METH in model cells and rat striatal synaptosomes, and in striatum of rats given subcutaneous injection of METH. Rotating disc electrode voltammetry revealed that initial rates of uptake and AMPH-induced efflux were elevated in phosphorylation-null T53A DAT relative to WT and charge-substituted T53D DATs, consistent with functions related to charge or polarity. These effects occurred without alterations of surface transporter levels, and mutants also showed reduced cocaine analog binding affinity that was not rescued by Zn Together these findings support a role for Thr-53 phosphorylation in regulation of transporter kinetic properties that could impact DAT responses to amphetamines and cocaine.
多巴胺转运体(DAT)通过对细胞外递质的再摄取来控制多巴胺神经传递的时空动态,是可卡因、安非他命(AMPH)和甲基苯丙胺(METH)等成瘾化合物的作用靶点。再摄取受激酶途径和药物暴露的调节,允许根据特定条件对清除进行微调,在这里我们研究了转运体配体对 DAT 残基 Thr-53 的影响,Thr-53 是一个脯氨酸定向磷酸化位点,先前与 AMPH 刺激的外排机制有关。我们的研究结果表明,在模型细胞和大鼠纹状体突触小体中,以及在接受 METH 皮下注射的大鼠纹状体中,AMPH 和 METH 以转运体依赖的方式刺激 Thr-53 磷酸化。旋转圆盘电极伏安法显示,与 WT 和电荷取代 T53D DAT 相比,磷酸化缺失的 T53A DAT 的摄取初始速率和 AMPH 诱导的外排速率升高,与电荷或极性相关的功能一致。这些效应发生在不改变表面转运体水平的情况下,突变体还显示可卡因类似物结合亲和力降低,Zn 不能挽救这种降低。这些发现支持 Thr-53 磷酸化在调节转运体动力学特性中的作用,这可能会影响 DAT 对安非他命和可卡因的反应。