Ruiu S, Piccardi M P, Bocchetta A, Del Zompo M
Department of Neurosciences B.B. Brodie, University of Cagliari, Italy.
Life Sci. 1996;59(20):1703-10. doi: 10.1016/s0024-3205(96)00506-1.
MPP-production and uptake by dopaminergic terminals are critical steps in MPTP-induced Parkinson-like disorder. We reported evidence for a specific uptake of MPP by synaptic vesicles from mouse striatum. Its regional distribution suggests it as a marker of the dopamine vesicular carrier. We decided to further characterize such an MPP uptake. Tetrabenazine inhibits the dopamine uptake both in the striatum and in the cerebellum with similar Km values suggesting an identify of the vesicular carrier in these areas. On the contrary, 3H-MPP vesicular uptake had in the striatum a t1/2 of 60 sec, but was not detectable at any time in the cerebellum. Moreover, MPP inhibited the uptake of 3H-DA (Ki: 1.6 +/- 0.03 microM) and 3H-NE (Ki 2.6 +/- 0.01 microM) in the striatum but not in the cerebellum, even at molar concentration. These pharmacological data indicate that in nondopaminergic areas the monoamine carrier may be similar but not identical from that located in dopaminergic areas.
多巴胺能终末对MPP的产生和摄取是MPTP诱导的帕金森样疾病中的关键步骤。我们报道了小鼠纹状体突触小泡对MPP有特异性摄取的证据。其区域分布表明它可作为多巴胺囊泡载体的标志物。我们决定进一步表征这种MPP摄取。丁苯那嗪在纹状体和小脑中均以相似的Km值抑制多巴胺摄取,这表明这些区域中囊泡载体具有一致性。相反,3H-MPP的囊泡摄取在纹状体中的t1/2为60秒,但在小脑中任何时候都检测不到。此外,MPP在纹状体中抑制3H-DA(Ki:1.6±0.03微摩尔)和3H-NE(Ki 2.6±0.01微摩尔)的摄取,但在小脑中即使在摩尔浓度下也不抑制。这些药理学数据表明,在非多巴胺能区域,单胺载体可能与多巴胺能区域中的载体相似但并不相同。