Vortherms Timothy A, Watts Val J
Department of Medicinal Chemistry and Molecular Pharmacology, Purdue University, West Lafayette, Indiana 47907, USA.
J Pharmacol Exp Ther. 2004 Jan;308(1):221-7. doi: 10.1124/jpet.103.057083. Epub 2003 Oct 17.
Acute activation of Galpha(i/o)-coupled D2 dopamine receptors inhibits A2A adenosine receptor stimulation of adenylate cyclase. This antagonistic interaction between D2 dopamine and A2A adenosine receptors has been well documented; however, the effects of persistent activation of D2 dopamine receptors on subsequent A2A adenosine receptor signaling have not been explored. The present study investigated the effects of short-term (3-h) and long-term (18-h) activation of D2L dopamine receptors on subsequent A2A adenosine receptor stimulation of adenylate cyclase in CAD-D2L and NS20Y-D2L neuroblastoma cells. Short- and long-term activation of D2L dopamine receptors markedly increased 5'-N-methylcarboxamidoadenosine (MECA)-stimulated cyclic AMP accumulation 1.4-fold and 1.7-fold, respectively. D2L receptor-induced sensitization of A2A-stimulated cyclic AMP accumulation was blocked by the D2 antagonist spiperone and pertussis toxin pretreatment. In addition, persistent activation of A2A adenosine receptors resulted in 50% desensitization of subsequent MECA-stimulated cyclic AMP accumulation; however, MECA-induced desensitization of A2A adenosine receptors did not prevent completely quinpirole-induced sensitization of adenylate cyclase. These studies revealed a novel mode of regulation between D2L dopamine and A2A adenosine receptors and suggest a cooperative interaction in the regulation of cyclic AMP signaling.
Gα(i/o) 偶联的 D2 多巴胺受体的急性激活可抑制 A2A 腺苷受体对腺苷酸环化酶的刺激作用。D2 多巴胺受体与 A2A 腺苷受体之间的这种拮抗相互作用已有充分记载;然而,D2 多巴胺受体持续激活对后续 A2A 腺苷受体信号传导的影响尚未得到研究。本研究调查了 D2L 多巴胺受体短期(3 小时)和长期(18 小时)激活对 CAD-D2L 和 NS20Y-D2L 神经母细胞瘤细胞中后续 A2A 腺苷受体刺激腺苷酸环化酶的影响。D2L 多巴胺受体的短期和长期激活分别使 5'-N-甲基甲酰胺基腺苷(MECA)刺激的环磷酸腺苷(cAMP)积累显著增加 1.4 倍和 1.7 倍。D2 拮抗剂螺哌隆和百日咳毒素预处理可阻断 D2L 受体诱导的 A2A 刺激的 cAMP 积累致敏作用。此外,A2A 腺苷受体的持续激活导致后续 MECA 刺激的 cAMP 积累脱敏 50%;然而,MECA 诱导的 A2A 腺苷受体脱敏并不能完全阻止喹吡罗诱导的腺苷酸环化酶致敏。这些研究揭示了 D2L 多巴胺受体与 A2A 腺苷受体之间一种新的调节模式,并提示在环磷酸腺苷信号传导调节中存在协同相互作用。