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内源性代谢型谷氨酸受体4通过一条不同寻常的Gα转导途径抑制突触传递。

Native metabotropic glutamate receptor 4 depresses synaptic transmission through an unusual Gα transduction pathway.

作者信息

Chardonnet Solenne, Bessiron Thomas, Ramos Cathy Isaura, Dammak Raoudha, Richard Marie-Ange, Boursier Céline, Cadilhac Christelle, Coquelle Frédéric M, Bossi Simon, Ango Fabrice, Le Maréchal Pierre, Decottignies Paulette, Berrier Catherine, McLean Heather, Daniel Hervé

机构信息

Equipe Pharmacologie et Biochimie de la Synapse, NeuroPSI - UMR 9197 « Univ Paris-sud - CNRS », Université Paris-Sud, F-91405 Orsay, France.

Plateforme de Transcriptomique et Protéomique (Trans-Prot), UMS-IPSIT, Univ Paris Sud CNRS Inserm, F- 92296 Chatenay-Malabry, France.

出版信息

Neuropharmacology. 2017 Jul 15;121:247-260. doi: 10.1016/j.neuropharm.2017.04.036. Epub 2017 Apr 26.

Abstract

In cerebellar cortex, mGlu receptors located on parallel fibers play an essential role in normal motor function, but the molecular mechanisms involved are not yet completely understood. Using a strategy combining biochemical and electrophysiological approaches in the rodent cerebellum, we demonstrate that presynaptic mGlu receptors control synaptic transmission through an atypical activation of Gα proteins. First, the Gα subunit, PLC and PKC signaling proteins present in cerebellar extracts are retained on affinity chromatography columns grafted with different sequences of the cytoplasmic domain of mGlu receptor. The i2 loop and the C terminal domain were used as baits, two domains that are known to play a pivotal role in coupling selectivity and efficacy. Second, in situ proximity ligation assays show that native mGlu receptors and Gα subunits are in close physical proximity in cerebellar cortical slices. Finally, electrophysiological experiments demonstrate that the molecular mechanisms underlying mGlu receptor-mediated inhibition of transmitter release at cerebellar Parallel Fiber (PF) - Molecular Layer Interneuron (MLI) synapses involves the Gα-PLC signaling pathway. Taken together, our results provide compelling evidence that, in the rodent cerebellar cortex, mGlu receptors act by coupling to the Gα protein and PLC effector system to reduce glutamate synaptic transmission.

摘要

在小脑皮质中,位于平行纤维上的代谢型谷氨酸受体(mGlu受体)在正常运动功能中起着至关重要的作用,但其涉及的分子机制尚未完全阐明。我们采用将生化和电生理方法相结合的策略,在啮齿动物小脑中进行研究,结果表明突触前mGlu受体通过对Gα蛋白的非典型激活来控制突触传递。首先,存在于小脑提取物中的Gα亚基、磷脂酶C(PLC)和蛋白激酶C(PKC)信号蛋白保留在接枝有mGlu受体不同细胞质结构域序列的亲和层析柱上。i2环和C末端结构域用作诱饵,这两个结构域在偶联选择性和效能方面起着关键作用。其次,原位邻近连接分析表明,在小脑皮质切片中,天然mGlu受体和Gα亚基在物理上紧密相邻。最后,电生理实验表明,mGlu受体介导的小脑平行纤维(PF)-分子层中间神经元(MLI)突触处递质释放抑制的分子机制涉及Gα-PLC信号通路。综上所述,我们的结果提供了令人信服的证据,即在啮齿动物小脑皮质中,mGlu受体通过与Gα蛋白和PLC效应系统偶联来减少谷氨酸能突触传递。

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