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Distinct roles of dopamine D2L and D2S receptor isoforms in the regulation of protein phosphorylation at presynaptic and postsynaptic sites

机译:多巴胺D2L和D2S受体亚型在突触前和突触后位点蛋白磷酸化调节中的不同作用

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摘要

Dopamine D2 receptors are highly expressed in the dorsal striatum where they participate in the regulation of (i) tyrosine hydroxylase (TH), in nigrostriatal nerve terminals, and (ii) the dopamine- and cAMP-regulated phosphoprotein of 32 kDa (DARPP-32), in medium spiny neurons. Two isoforms of the D2 receptor are generated by differential splicing of the same gene and are referred to as short (D2S) and long (D2L) dopamine receptors. Here we have used wild-type mice, dopamine D2 receptor knockout mice (D2 KO mice; lacking both D2S and D2L receptors) and D2L receptor-selective knockout mice (D2L KO mice) to evaluate the involvement of each isoform in the regulation of the phosphorylation of TH and DARPP-32. Incubation of striatal slices from wild-type mice with quinpirole, a dopamine D2 receptor agonist, decreased the state of phosphorylation of TH at Ser-40 and its enzymatic activity. Both effects were abolished in D2 KO mice but were still present in D2L KO mice. In wild-type mice, quinpirole inhibits the increase in DARPP-32 phosphorylation at Thr-34 induced by SKF81297, a dopamine D1 receptor agonist. This effect is absent in D2 KO as well as D2L KO mice. The inability of quinpirole to regulate DARPP-32 phosphorylation in D2L KO mice cannot be attributed to decreased coupling of D2S receptors to G proteins, because quinpirole produces a similar stimulation of [35S]GTPγS binding in wild-type and D2L KO mice. These results demonstrate that D2S and D2L receptors participate in presynaptic and postsynaptic dopaminergic transmission, respectively.
机译:多巴胺D2受体在背侧纹状体中高度表达,在其中它们参与(i)纹状体神经末梢中酪氨酸羟化酶(TH)的调节,以及(ii)多巴胺和cAMP调节的32 kDa磷酸化蛋白(DARPP-32 ),在中等多刺的神经元中。 D2受体的两种同工型是通过同一基因的差异剪接产生的,被称为短(D2S)和长(D2L)多巴胺受体。在这里,我们使用了野生型小鼠,多巴胺D2受体敲除小鼠(D2 KO小鼠;缺乏D2S和D2L受体)和D2L受体选择性敲除小鼠(D2L KO小鼠)来评估每种同工型参与调控TH和DARPP-32的磷酸化。将野生型小鼠纹状体切片与喹吡罗(一种多巴胺D2受体激动剂)一起孵育,可以降低TH在Ser-40处的磷酸化状态及其酶活性。两种作用在D2 KO小鼠中均被取消,但仍存在于D2L KO小鼠中。在野生型小鼠中,喹吡罗抑制由多巴胺D1受体激动剂SKF81297诱导的Thr-34处DARPP-32磷酸化的增加。在D2 KO和D2L KO小鼠中没有这种作用。喹吡罗不能调节D2L KO小鼠的DARPP-32磷酸化不能归因于D2S受体与G蛋白的偶联减少,因为喹吡罗在野生型和D2L KO小鼠中产生了类似的[35S]GTPγS结合刺激。这些结果表明,D2S和D2L受体分别参与突触前和突触后多巴胺能传递。

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