Department of Biochemistry, Memorial University of Newfoundland, St. John's, NL, A1B 3X9, Canada.
Sci Rep. 2016 Nov 30;6:38006. doi: 10.1038/srep38006.
p-Tyramine is an archetypal member of the endogenous family of monoamines known as trace amines, and is one of the endogenous agonists for trace amine-associated receptor (TAAR)1. While much work has focused on the function of TAAR1, very little is known about the regulation of the endogenous agonists. We have previously reported that p-tyramine readily crosses lipid bilayers and that its release from synaptosomes is non-exocytotic. Such release, however, showed characteristics of modification by one or more transporters. Here we provide the first characterization of such a transporter. Using frontal cortical and striatal synaptosomes we show that p-tyramine passage across synaptosome membranes is not modified by selective inhibition of either the dopamine, noradrenaline or 5-HT transporters. In contrast, inhibition of uptake-2 transporters significantly slowed p-tyramine re-uptake. Using inhibitors of varying selectivity, we identify Organic Cation Transporter 2 (OCT2; SLC22A2) as mediating high affinity uptake of p-tyramine at physiologically relevant concentrations. Further, we confirm the presence of OCT2 protein in synaptosomes. These results provide the first identification of a high affinity neuronal transporter for p-tyramine, and also confirm the recently described localization of OCT2 in pre-synaptic terminals.
对羟苯乙胺是内源性单胺家族的典型成员,被称为微量胺,也是微量胺相关受体(TAAR)1 的内源性激动剂之一。虽然大量工作集中在 TAAR1 的功能上,但对内源性激动剂的调节知之甚少。我们之前报道过对羟苯乙胺容易穿过脂质双层,并且其从突触小体中的释放是非胞吐的。然而,这种释放表现出被一种或多种转运体修饰的特征。在这里,我们首次对这种转运体进行了表征。使用额皮质和纹状体突触小体,我们表明对羟苯乙胺穿过突触小体膜的传递不受多巴胺、去甲肾上腺素或 5-HT 转运体的选择性抑制的影响。相比之下,摄取-2 转运体的抑制显著减缓了对羟苯乙胺的再摄取。使用具有不同选择性的抑制剂,我们确定有机阳离子转运体 2(OCT2;SLC22A2)作为介导生理相关浓度下对羟苯乙胺的高亲和力摄取的转运体。此外,我们确认了 OCT2 蛋白在突触小体中的存在。这些结果首次鉴定了对羟苯乙胺的高亲和力神经元转运体,并证实了最近描述的 OCT2 在突触前末端的定位。