Moussa Charbel E-H, Tomita York, Sidhu Anita
Department of Pediatrics, Georgetown University, Washington, DC 20007, USA.
Neurochem Int. 2006 Feb;48(3):226-34. doi: 10.1016/j.neuint.2005.09.007. Epub 2005 Nov 14.
Striatal degeneration occurs through unknown mechanisms in certain neurodegenerative disorders characterized by increased and sustained synaptic levels of dopamine. In the present studies, we examined the effects of treatment of SK-N-MC neuroblastoma cells with dopamine to understand the participation of dopamine D(1) receptor in postsynaptic cytotoxicity. Treatment of SK-N-MC cells either with dopamine or the D(1) receptor agonist SKF R-38393 resulted in a significant increase in the production of reactive oxygen species (by approximately 2.75-fold) and cell death ( approximately 50%), while antagonism of the D(1) receptor with SCH 23390 significantly reversed (to approximately 75% of control level) these effects. Accumulation of cAMP in dopamine treated cells (t(1/2)=1.5h) preceded changes in ionic gradient (t(1/2)=6.5h), as measured by intracellular potassium concentration and leakage of cytochrome c into the cytosol (t(1/2)=13 h), suggesting a possible staging of toxic events as a result of activation of D(1) receptor by dopamine. Examination of cellular metabolic properties with (13)C NMR spectroscopy showed an inhibitory effect on tricarboxylic acid cycle metabolism via D(1)-mediated receptors after treatment with dopamine, suggesting a direct role for D(1) receptor in dopamine-induced postsynaptic cell death. The present studies provide novel insight into a possible patho-physiological staging of cytotoxic events that are mediated by activation of D(1) receptor.
在某些以多巴胺突触水平持续升高为特征的神经退行性疾病中,纹状体变性通过未知机制发生。在本研究中,我们检测了用多巴胺处理SK-N-MC神经母细胞瘤细胞的效果,以了解多巴胺D(1)受体在突触后细胞毒性中的作用。用多巴胺或D(1)受体激动剂SKF R-38393处理SK-N-MC细胞,导致活性氧产生显著增加(约2.75倍)和细胞死亡(约50%),而用SCH 23390拮抗D(1)受体可显著逆转这些效应(至对照水平的约75%)。多巴胺处理的细胞中cAMP的积累(t(1/2)=1.5小时)先于离子梯度的变化(t(1/2)=6.5小时),离子梯度变化通过细胞内钾浓度和细胞色素c泄漏到细胞质中进行测量(t(1/2)=13小时),这表明多巴胺激活D(1)受体可能导致毒性事件分阶段发生。用(13)C核磁共振光谱检查细胞代谢特性表明,多巴胺处理后通过D(1)介导的受体对三羧酸循环代谢有抑制作用,这表明D(1)受体在多巴胺诱导的突触后细胞死亡中起直接作用。本研究为D(1)受体激活介导的细胞毒性事件可能的病理生理分期提供了新的见解。