首页> 外文期刊>Brain research. Molecular brain research >Dopamine efflux via wild-type and mutant dopamine transporters: alanine substitution for proline-572 enhances efflux and reduces dependence on extracellular dopamine, sodium and chloride concentrations.
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Dopamine efflux via wild-type and mutant dopamine transporters: alanine substitution for proline-572 enhances efflux and reduces dependence on extracellular dopamine, sodium and chloride concentrations.

机译:通过野生型和突变型多巴胺转运蛋白进行多巴胺外排:丙氨酸替代脯氨酸572可提高外排量,并减少对细胞外多巴胺,钠和氯化物浓度的依赖性。

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摘要

The dopamine transporter (DAT) can mediate not only inward uptake of dopamine, but also its outward efflux by mechanisms that have been only partially elucidated. DAT-dependent dopamine efflux can be studied kinetically and apparent substrate affinity and V(max) values determined. We now report that wild-type DAT displays apparent affinities for efflux more than 300-fold lower than those for uptake. Efflux rates are enhanced by increased extracellular concentrations of dopamine or amphetamine and by lowered extracellular concentrations of Na(+) or Cl(-). Alanine substitutions for six proline residues located in or near DAT transmembrane domains increase apparent affinity and decrease V(max) values for dopamine efflux mediated by these mutant transporters. Mutant 12P572A displays increased DAT efflux with reduced dependence on ion or dopamine concentrations. These data add to evidence for the specificity of transporter-mediated efflux processes and begin to elucidate DAT candidate domains that may be preferentially involved with efflux activities.
机译:多巴胺转运蛋白(DAT)不仅可以通过仅部分阐明的机制介导多巴胺的向内摄取,还可以介导其向外流出。可以动力学研究DAT依赖的多巴胺流出,并确定表观底物亲和力和V(max)值。我们现在报告说,野生型DAT的表观亲和力比吸收的亲和力低300倍以上。外排浓度通过细胞外多巴胺或苯丙胺浓度的增加和细胞外Na(+)或Cl(-)浓度的降低而提高。位于DAT跨膜结构域或附近的6个脯氨酸残基的丙氨酸取代增加了表观亲和力,并降低了这些突变转运蛋白介导的多巴胺外排的V(max)值。突变体12P572A显示出DAT流出增加,对离子或多巴胺浓度的依赖性降低。这些数据为转运蛋白介导的外排过程的特异性提供了证据,并开始阐明可能优先参与外排活动的DAT候选结构域。

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