Translational Neuroscience Unit, IRCCS Casa Sollievo della Sofferenza, 71013, San Giovanni Rotondo, Italy.
Laboratory of Behavioural Neuroscience, Ceinge Biotecnologie Avanzate, 80145, Naples, Italy.
Sci Rep. 2019 Jun 20;9(1):8898. doi: 10.1038/s41598-019-45419-1.
Dysfunction of NMDA receptor (NMDAR)-mediated transmission is supposed to contribute to the motor and non-motor symptoms of Parkinson's Disease (PD), and to L-DOPA-induced dyskinesia. Besides the main agonist L-glutamate, two other amino acids in the atypical D-configuration, D-serine and D-aspartate, activate NMDARs. In the present work, we investigated the effect of dopamine depletion on D-amino acids metabolism in the brain of MPTP-lesioned Macaca mulatta, and in the serum and cerebrospinal fluid of PD patients. We found that MPTP treatment increases D-aspartate and D-serine in the monkey putamen while L-DOPA rescues both D-amino acids levels. Conversely, dopaminergic denervation is associated with selective D-serine reduction in the substantia nigra. Such decrease suggests that the beneficial effect of D-serine adjuvant therapy previously reported in PD patients may derive from the normalization of endogenous D-serine levels and consequent improvement of nigrostriatal hypoglutamatergic transmission at glycine binding site. We also found reduced D-serine concentration in the cerebrospinal fluid of L-DOPA-free PD patients. These results further confirm the existence of deep interaction between dopaminergic and glutamatergic neurotransmission in PD and disclose a possible direct influence of D-amino acids variations in the changes of NMDAR transmission occurring under dopamine denervation and L-DOPA therapy.
NMDA 受体(NMDAR)介导的传递功能障碍被认为与帕金森病(PD)的运动和非运动症状以及 L-DOPA 诱导的运动障碍有关。除了主要激动剂 L-谷氨酸外,两种其他非典型 D-构型的氨基酸,D-丝氨酸和 D-天冬氨酸,也能激活 NMDAR。在本工作中,我们研究了多巴胺耗竭对 MPTP 损伤的猕猴大脑、PD 患者血清和脑脊液中 D-氨基酸代谢的影响。我们发现,MPTP 处理增加了猴子壳核中的 D-天冬氨酸和 D-丝氨酸,而 L-DOPA 则挽救了这两种 D-氨基酸的水平。相反,多巴胺能神经末梢变性与黑质中 D-丝氨酸的选择性减少有关。这种减少表明,先前在 PD 患者中报道的 D-丝氨酸辅助治疗的有益效果可能源于内源性 D-丝氨酸水平的正常化,以及随后改善甘氨酸结合部位的纹状体谷氨酸能传递。我们还发现,L-DOPA 免费 PD 患者的脑脊液中 D-丝氨酸浓度降低。这些结果进一步证实了 PD 中多巴胺能和谷氨酸能神经传递之间存在深刻的相互作用,并揭示了 D-氨基酸变化可能直接影响多巴胺能神经末梢变性和 L-DOPA 治疗下 NMDAR 传递的变化。