David H N, Abraini J H
UMR CNRS 6551, Centre Cyceron, BP 5229, Université de Caen, Boulevard H. Becquerel, 14074 Caen cedex, France.
Eur J Neurosci. 2001 Jun;13(11):2157-64. doi: 10.1046/j.0953-816x.2001.01584.x.
Functional interactions between dopamine (DA) and glutamate neurotransmissions in both the dorsal and the ventral striatum have been described for long time. However, there is much controversy as to whether glutamate transmission stimulates or attenuates DA release and locomotor activity. We investigated the functional interactions on locomotor activity between group I metabotropic glutamatergic receptors (mGlu receptors) and both D1-like and D2-like DA receptors in the rat nucleus accumbens. Intra-accumbens administration of the selective group I mGlu receptor antagonist S-4-CPG (0.2 or 2 microg per side), which had no effect when injected alone, prevented the increase in locomotor activity produced by the selective D1-like receptor agonist SKF 38393 (1 microg per side). Co-administration with S-4-CPG of the group I mGlu receptor agonist DHPG, but not of the group II mGlu receptor agonist APDC or the group III mGlu receptor agonist AP4, reversed the antagonistic effect of S-4-CPG on the SKF 38393-induced increase in locomotor activity. This indicates that the antagonistic effect of S-4-CPG could result from an action at the group I mGlu receptors. In contrast, administration of S-4-CPG showed no effect on the locomotor responses produced by either the selective D2-like receptor agonist LY 171555 (1 microg per side) or a mixed solution of SKF 38393 + LY 171555 (1 microg per side each). Altogether, these results confirm that glutamate transmission may control locomotor function through mGlu receptors in a DA-dependent manner, and further indicate that group I mGlu receptors would interact with D1-like receptors, but not D2-like receptors, to modulate DA transmission and locomotor activity.
长期以来,人们一直在描述多巴胺(DA)与背侧和腹侧纹状体中谷氨酸神经传递之间的功能相互作用。然而,关于谷氨酸传递是刺激还是减弱DA释放及运动活性,存在诸多争议。我们研究了大鼠伏隔核中I组代谢型谷氨酸受体(mGlu受体)与D1样和D2样DA受体之间对运动活性的功能相互作用。伏隔核内注射选择性I组mGlu受体拮抗剂S-4-CPG(每侧0.2或2微克),单独注射时无作用,但可阻止选择性D1样受体激动剂SKF 38393(每侧1微克)引起的运动活性增加。I组mGlu受体激动剂DHPG与S-4-CPG共同给药,而非II组mGlu受体激动剂APDC或III组mGlu受体激动剂AP4,可逆转S-4-CPG对SKF 38393诱导的运动活性增加的拮抗作用。这表明S-4-CPG的拮抗作用可能源于其对I组mGlu受体的作用。相反,S-4-CPG给药对选择性D2样受体激动剂LY 171555(每侧1微克)或SKF 38393 + LY 171555混合溶液(每侧各1微克)产生的运动反应均无影响。总之,这些结果证实谷氨酸传递可能通过mGlu受体以DA依赖的方式控制运动功能,并进一步表明I组mGlu受体将与D1样受体而非D2样受体相互作用,以调节DA传递和运动活性。