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首页> 外文期刊>Experimental Neurology >Enhanced sensitivity to group II mGlu receptor activation at corticostriatal synapses in mice lacking the familial parkinsonism-linked genes PINK1 or Parkin.
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Enhanced sensitivity to group II mGlu receptor activation at corticostriatal synapses in mice lacking the familial parkinsonism-linked genes PINK1 or Parkin.

机译:在缺乏家族性帕金森病相关基因PINK1或Parkin的小鼠中,皮质类固醇突触对II组mGlu受体激活的敏感性增强。

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摘要

An altered glutamatergic input at corticostriatal synapses has been shown in experimental models of Parkinson's disease (PD). In the present work, we analyzed the membrane and synaptic responses of striatal neurons to metabotropic glutamate (mGlu) receptor activation in two different mouse models of inherited PD, linked to mutations in PINK1 or Parkin genes. Both in PINK1 and Parkin knockout ((-/-)) mice, activation of group I mGlu receptors by 3,5-DHPG caused a membrane depolarization coupled to an increase in firing frequency in striatal cholinergic interneurons that was comparable to the response observed in the respective wild-type (WT) interneurons. The sensitivity to group II and III mGlu receptors was tested on cortically-evoked excitatory postsynaptic potentials (EPSPs) recorded from medium spiny neurons (MSNs). Both LY379268 and L-AP4, agonists for group II and III, respectively, had no effect on intrinsic membrane properties, but dose-dependently reduced the amplitude of corticostriatal EPSPs. However, both in PINK1(-/-) and Parkin(-/-) mice, LY379268, but not L-AP4, exhibited a greater potency as compared to WT in depressing EPSP amplitude. Accordingly, the dose-response curve for the response to LY379268 in both knockout mice was shifted leftward. Moreover, consistent with a presynaptic site of action, both LY379268 and L-AP4 increased the paired-pulse ratio either in PINK1(-/-) and Parkin(-/-) or in WT mice. Acute pretreatment with L-dopa did not rescue the enhanced sensitivity to LY379268. Together, these results suggest that the selective increase in sensitivity of striatal group II mGlu receptors represents an adaptive change in mice in which an altered dopamine metabolism has been documented.
机译:帕金森氏病(PD)的实验模型显示皮质皮质突触的谷氨酸能输入发生了变化。在目前的工作中,我们分析了遗传的PD的两种不同小鼠模型中纹状体神经元对代谢型谷氨酸(mGlu)受体活化的膜和突触响应,它们与PINK1或Parkin基因的突变有关。在PINK1和Parkin基因敲除((-/-))小鼠中,3,5-DHPG对I组mGlu受体的激活均引起膜去极化,并与纹状体胆碱能中间神经元的放电频率增加相媲美,这种反应可与在PKC1中观察到的反应相当各自的野生型(WT)中间神经元。通过皮质中枢神经元(MSNs)记录的皮质诱发的兴奋性突触后电位(EPSPs),测试了对II和III组mGlu受体的敏感性。 II组和III组的激动剂LY379268和L-AP4都对内在的膜特性没有影响,但剂量依赖性地降低了皮质骨膜EPSPs的振幅。但是,在PINK1(-/-)和Parkin(-/-)小鼠中,与WT相比,LY379268而不是L-AP4在抑制EPSP振幅方面表现出更大的效价。因此,两只敲除小鼠中对LY379268的应答的剂量-应答曲线向左移动。此外,与突触前的作用部位一致,LY379268和L-AP4均可增加PINK1(-/-)和Parkin(-/-)或WT小鼠中的配对脉冲比率。左旋多巴的急性预处理不能挽救对LY379268的敏感性。总之,这些结果表明,纹状体II族mGlu受体敏感性的选择性增加代表了小鼠中的适应性变化,其中已经记录了多巴胺代谢的改变。

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