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PI 3-kinase regulation of dopamine uptake.

机译:PI 3-激酶调节多巴胺摄取。

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摘要

The magnitude and duration of dopamine (DA) signaling is defined by the amount of vesicular release, DA receptor sensitivity, and the efficiency of DA clearance, which is largely determined by the DA transporter (DAT). DAT uptake capacity is determined by the number of functional transporters on the cell surface as well as by their turnover rate. Here we show that inhibition of phosphatidylinositol (PI) 3-kinase with LY294002 induces internalization of the human DAT (hDAT), thereby reducing transport capacity. Acute treatment with LY294002 reduced the maximal rate of [(3) H]DA uptake in rat striatal synaptosomes and in human embryonic kidney (HEK) 293 cells stably expressing the hDAT (hDAT cells). In addition, LY294002 caused a significant redistribution of the hDAT from the plasma membrane to the cytosol. Conversely, insulin, which activates PI 3-kinase, increased [(3)H]DA uptake and blocked the amphetamine-induced hDAT intracellular accumulation, as did transient expression of constitutively active PI 3-kinase. The LY294002-induced reduction in [(3)H]DA uptake and hDAT cell surface expression was inhibited by expression of a dominant negative mutant of dynamin I, indicating that dynamin-dependent trafficking can modulate transport capacity. These data implicate DAT trafficking in the hormonal regulation of dopaminergic signaling, and suggest that a state of chronic hypoinsulinemia, such as in diabetes, may alter synaptic DA signaling by reducing the available cell surface DATs.
机译:多巴胺(DA)信号传导的大小和持续时间由囊泡释放量,DA受体敏感性和DA清除效率决定,而后者在很大程度上由DA转运蛋白(DAT)决定。 DAT的吸收能力取决于细胞表面功能性转运蛋白的数量及其周转率。在这里,我们显示了用LY294002抑制磷脂酰肌醇(PI)3-激酶诱导人DAT(hDAT)的内在化,从而降低了运输能力。 LY294002的急性治疗降低了大鼠纹状体突触小体和稳定表达hDAT的人胚胎肾(HEK)293细胞(hDAT细胞)中[(3)H] DA摄取的最大速率。另外,LY294002导致hDAT从质膜到细胞质的大量重新分布。相反,激活PI 3-激酶的胰岛素增加了[(3)H] DA的摄取,并阻断了苯丙胺诱导的hDAT细胞内积累,以及组成型活性PI 3-激酶的瞬时表达也是如此。 LY294002诱导的[(3)H] DA摄取和hDAT细胞表面表达的减少被dynamin I的显性负突变体的表达抑制,表明dynamin依赖的运输可以调节运输能力。这些数据表明DAT转运参与多巴胺能信号传导的激素调节,并表明慢性低胰岛素血症(例如糖尿病)可能会通过减少可利用的细胞表面DAT来改变突触DA信号传导。

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