Williams Shimere, Mmbaga Natu, Chirwa Sanika
Division of Neurobiology and Neurotoxicology, Department of Biomedical Sciences, Meharry Medical College, 1005 D.B. Todd Blvd., Nashville, TN 37208, USA.
Neurosci Lett. 2006 Jul 10;402(1-2):46-50. doi: 10.1016/j.neulet.2006.03.075. Epub 2006 May 3.
We evaluated whether activating dopamine D1 receptors (D1R) with an agonist will mimic the effects of long-term potentiation (LTP)-inducing electrical stimulation and trigger the expression of the presynaptic growth-associated protein 43 (GAP-43), a putative synaptic plasticity factor. Thus, we conducted GAP-43 protein analyses together with assessments of LTP across CA3/CA1 synapses in guinea pigs administered with SKF38393 (the D1R agonist) and/or SCH23390 (the D1R antagonist). Our results showed that guinea pigs treated with SKF38393 coupled with low-frequency stimulation gradually exhibited an LTP-like potentiation in correlation with increased GAP-43 protein expression. However, when SKF38393 treatment was preceded by administration of SCH23390, this antagonized the occurrence of both synaptic potentiation and GAP-43 up-regulation. By comparison, persistent LTP was readily expressed after brief high frequency tetanic stimulation in control guinea pigs, whereas animals injected with SCH23390 and tetanized only developed early-LTP but not late-LTP. Western blot analyses showed GAP-43 up-regulation in the tetanized control guinea pigs but not those injected with SCH23390. We conclude that direct D1R activations with an agonist can mimic LTP-inducing electrical stimulation to produce GAP-43 up-regulation and synaptic plasticity.
我们评估了用激动剂激活多巴胺 D1 受体(D1R)是否会模拟诱导长时程增强(LTP)的电刺激的作用,并触发突触前生长相关蛋白 43(GAP - 43)的表达,GAP - 43 是一种假定的突触可塑性因子。因此,我们对给予 SKF38393(D1R 激动剂)和/或 SCH23390(D1R 拮抗剂)的豚鼠,进行了 GAP - 43 蛋白分析以及对 CA3/CA1 突触处 LTP 的评估。我们的结果表明,用 SKF38393 处理并结合低频刺激的豚鼠逐渐表现出类似 LTP 的增强,这与 GAP - 43 蛋白表达增加相关。然而,在给予 SKF38393 之前先给予 SCH23390,则会拮抗突触增强和 GAP - 43 的上调。相比之下,在对照豚鼠中,短暂高频强直刺激后很容易表达持续性 LTP,而注射了 SCH23390 并进行强直刺激的动物仅产生早期 LTP,而非晚期 LTP。蛋白质印迹分析显示,强直刺激的对照豚鼠中 GAP - 43 上调,而注射了 SCH23390 的豚鼠则没有。我们得出结论,用激动剂直接激活 D1R 可以模拟诱导 LTP 的电刺激,从而产生 GAP - 43 上调和突触可塑性。