Griffon N, Pilon C, Sautel F, Schwartz J C, Sokoloff P
Unité de Neurobiologie et Pharmacologie, Centre Paul Broca de l'INSERM, Paris, France.
J Neurochem. 1997 Jan;68(1):1-9. doi: 10.1046/j.1471-4159.1997.68010001.x.
As cerebral neurons express the dopamine D1 receptor positively coupled with adenylyl cyclase, together with the D3 receptor, we have investigated in a heterologous cell expression system the relationships of cyclic AMP with D3 receptor signaling pathways. In NG108-15 cells transfected with the human D3 receptor cDNA, dopamine, quinpirole, and other dopamine receptor agonists inhibited cyclic AMP accumulation induced by forskolin. Quinpirole also increased mitogenesis, assessed by measuring [3H]thymidine incorporation. This effect was blocked partially by genistein, a tyrosine kinase inhibitor. Forskolin enhanced by 50-75% the quinpirole-induced [3H]thymidine incorporation. This effect was maximal with 100 nM forskolin, occurred after 6-16 h, was reproduced by cyclic AMP-permeable analogues, and was blocked by a protein kinase A inhibitor. Forskolin increased D3 receptor expression up to 135%, but only after 16 h and at concentrations of > 1 microM. Thus, in this cell line, the D3 receptor uses two distinct signaling pathways: it efficiently inhibits adenylyl cyclase and induces mitogenesis, an effect possibly involving tyrosine phosphorylation. Activation of the cyclic AMP cascade potentiates the D3 receptor-mediated mitogenic response, through phosphorylation by a cyclic AMP-dependent kinase of a yet unidentified component. Hence, transduction of the D3 receptor can involve both opposite and synergistic interactions with cyclic AMP.
由于脑神经元表达与腺苷酸环化酶正性偶联的多巴胺D1受体,连同D3受体,我们已在异源细胞表达系统中研究了环磷酸腺苷(cAMP)与D3受体信号通路之间的关系。在转染了人D3受体cDNA的NG108 - 15细胞中,多巴胺、喹吡罗及其他多巴胺受体激动剂抑制了福斯高林诱导的cAMP积累。喹吡罗还通过测量[3H]胸腺嘧啶核苷掺入评估增加了有丝分裂活性。这种效应被酪氨酸激酶抑制剂染料木黄酮部分阻断。福斯高林使喹吡罗诱导的[3H]胸腺嘧啶核苷掺入增加50 - 75%。此效应在100 nM福斯高林时最大,在6 - 16小时后出现,可被cAMP可渗透类似物重现,并被蛋白激酶A抑制剂阻断。福斯高林使D3受体表达增加至135%,但仅在16小时后且浓度>1 microM时出现。因此,在该细胞系中,D3受体使用两种不同的信号通路:它有效抑制腺苷酸环化酶并诱导有丝分裂活性,这种效应可能涉及酪氨酸磷酸化。cAMP级联的激活通过一种尚未确定成分的cAMP依赖性激酶的磷酸化增强了D3受体介导的有丝分裂反应。因此,D3受体的转导可涉及与cAMP的相反和协同相互作用。