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The organic cation transporter 3 (OCT3) as molecular target of psychotropic drugs: Transport characteristics and acute regulation of cloned murine OCT3

机译:有机阳离子转运蛋白3(OCT3)作为精神药物的分子靶标:克隆的鼠OCT3的转运特性和急性调控

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The organic cation transporter 3 (OCT3) is a widely expressed transporter for endogenous and exogenous organic cations. Of particular interest is OCT3 expression and function in the brain, where it plays a role in serotonin clearance and influences mood and behavior. Protein kinase signaling mediates rapid modulation of cerebral processes, but little is known about acute regulation of OCT3 by protein kinases. Therefore, we cloned mouse OCT3 (mOCT3) and generated a human embryonic kidney cell line stably expressing the transporter to study transport characteristics, acute regulation by protein kinases, and interaction with psychotropic drugs. Uptake measurement was performed using the fluorescent cation 4-(4-(dimethylamino)styryl)-N- methylpyridinium iodide (ASP+, 1 μM) as a substrate. The translational value of these findings was determined by comparing results obtained with cloned mouse and human OCT3. mOCT3-mediated transport is membrane potential dependent and pH independent. ASP+ uptake by mOCT3 and human OCT3 (hOCT3) was efficiently inhibited by 1-methyl-4-phenylpyridinium, tetrapentylammonium (TPA+), corticosterone, serotonin, and histamine and by the drugs ketamine, fluoxetine, and diazepam. The half maximal inhibitory concentrations of mOCT3 and hOCT3 for TPA+, serotonin, diazepam, and ketamine are significantly different. Diazepam is a non-transported inhibitor. Furthermore, the activities of mOCT3 and hOCT3 are acutely regulated by the p56 lck tyrosine kinase by decreasing their V max. Studies with freshly isolated renal proximal tubules from mOCT1/2-/- mice, in which mOCT3 is the only OCT present, confirmed this regulation pathway. Only the activity of hOCT3 is regulated by calmodulin. These findings suggest that even though many transport properties of mOCT3 and hOCT3 are similar, there are also species-specific aspects of OCT3 function.
机译:有机阳离子转运蛋白3(OCT3)是一种广泛表达的内源性和外源性有机阳离子转运蛋白。特别令人感兴趣的是OCT3在大脑中的表达和功能,它在5-羟色胺清除中起作用并影响情绪和行为。蛋白激酶信号传导介导大脑过程的快速调节,但对蛋白激酶对OCT3的急性调节知之甚少。因此,我们克隆了小鼠OCT3(mOCT3),并生成了稳定表达该转运蛋白的人胚胎肾细胞系,以研究转运特性,蛋白激酶的急性调节以及与精神药物的相互作用。使用荧光阳离子4-(4-(二甲基氨基)苯乙烯基)-N-碘化甲基吡啶鎓(ASP +,1μM)作为底物进行吸收测量。这些结果的翻译价值是通过比较克隆的小鼠和人OCT3获得的结果来确定的。 mOCT3介导的转运与膜电位有关且与pH无关。 1-甲基-4-苯基吡啶鎓,四戊基铵(TPA +),皮质酮,5-羟色胺和组胺以及氯胺酮,氟西汀和地西efficiently有效抑制了mOCT3和人OCT3(hOCT3)的ASP +吸收。对TPA +,5-羟色胺,地西epa和氯胺酮而言,mOCT3和hOCT3的最大半数抑制浓度显着不同。地西p是一种非转运抑制剂。此外,p56 lck酪氨酸激酶通过降低Vmax来急性调节mOCT3和hOCT3的活性。用mOCT1 / 2-/-小鼠新鲜分离的肾近端小管进行的研究证实了这种调节途径,其中mOCT3是唯一的OCT。钙调蛋白仅调节hOCT3的活性。这些发现表明,即使mOCT3和hOCT3的许多转运特性相似,OCT3功能也有特定于物种的方面。

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