首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Homologous regulation of the heptahelical D1A receptor responsiveness: specific cytoplasmic tail regions mediate dopamine-induced phosphorylation, desensitization and endocytosis.
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Homologous regulation of the heptahelical D1A receptor responsiveness: specific cytoplasmic tail regions mediate dopamine-induced phosphorylation, desensitization and endocytosis.

机译:同源调节七螺旋状D1A受体的反应性:特定的细胞质尾区介导多巴胺诱导的磷酸化,脱敏和胞吞作用。

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摘要

In the present study, we investigate the role of specific cytoplasmic tail (CT) regions of the D1A receptor in mediating dopamine (DA)-induced phosphorylation, desensitization and endocytosis. Results obtained in human embryonic kidney (HEK) cells expressing the wild-type (WT) or truncation forms (Delta425, Delta379 and Delta351) of the D1A receptor show that sequences located downstream of Gly379 regulate DA-mediated phosphorylation-dependent desensitization of D1A receptors. However, the longer truncation mutant Delta351 failed to undergo detectable DA-induced phosphorylation while exhibiting DA-induced desensitization features similar to the shorter truncation mutant Delta379. These data potentially suggest a novel role for a receptor phosphorylation-independent process in the DA-promoted D1A subtype desensitization. Our immunofluorescence data also suggest that sequences located between Cys351 and Gly379 play an important role in DA-mediated receptor endocytosis. Additionally, time-course studies were done in intact cells expressing WT or truncation receptors to measure the observed rate constant for adenylyl cyclase (AC) activation or kobs, a parameter linked to the receptor-G protein coupling status. In agreement with the desensitization data, Delta425- and Delta379-expressing cells exhibit an increase of kobs in comparison with WT-expressing cells. Nevertheless, Delta351-expressing cells, which harbor similar desensitization features of Delta379-expressing cells, display no change in kobs when compared with WT-expressing cells. Our results suggest that a defective DA-induced endocytosis may hamper Delta351 resensitization and concomitant increase in kobs. Thus, our study showing that specific D1A receptor CT sequences regulate DA-induced phosphorylation, desensitization, and endocytosis highlights the underlying molecular complexity of signaling at dopaminergic synapses.
机译:在本研究中,我们调查D1A受体的特定细胞质尾(CT)区在介导多巴胺(DA)诱导的磷酸化,脱敏和内吞作用中的作用。在人类胚胎肾脏(HEK)细胞中表达D1A受体的野生型(WT)或截短形式(Delta425,Delta379和Delta351)的结果表明,位于Gly379下游的序列调节DA介导的D1A受体的磷酸化依赖性脱敏。但是,较长的截短突变体Delta351未能经历可检测到的DA诱导的磷酸化,而表现出与较短的截短突变体Delta379类似的DA诱导的脱敏特征。这些数据潜在地暗示了在DA促进的D1A亚型脱敏中受体磷酸化非依赖性过程的新作用。我们的免疫荧光数据还表明,位于Cys351和Gly379之间的序列在DA介导的受体内吞作用中起着重要作用。此外,在表达WT或截短受体的完整细胞中进行了时程研究,以测量所观察到的腺苷酸环化酶(AC)激活或kobs速率常数,该常数与受体G蛋白偶联状态有关。与脱敏数据一致,与表达WT的细胞相比,表达Delta425和Delta379的细胞表现出kobs的增加。但是,与表达WT的细胞相比,表达Delta351的细胞具有类似的Delta379表达细胞的脱敏特性,但它们的kobs却没有变化。我们的结果表明,有缺陷的DA诱导的内吞作用可能会阻碍Delta351的再敏化并伴随球蛋白的增加。因此,我们的研究表明特定的D1A受体CT序列调节DA诱导的磷酸化,脱敏和胞吞作用,突显了多巴胺能突触信号转导的潜在分子复杂性。

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