首页> 外文期刊>Neurochemistry International: The International Journal for the Rapid Publication of Critical Reviews, Preliminary and Original Research Communications in Neurochemistry >Metabotropic glutamate receptor 5, but not 1, modulates NMDA receptor-mediated activation of neuronal nitric oxide synthase.
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Metabotropic glutamate receptor 5, but not 1, modulates NMDA receptor-mediated activation of neuronal nitric oxide synthase.

机译:代谢型谷氨酸受体5(而不是1)调节NMDA受体介导的神经元一氧化氮合酶的活化。

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摘要

In cerebellar neurons in culture, activation of group I metabotropic glutamate receptors (mGluRs) prevents glutamate and NMDA-induced neuronal death, indicating that it interferes with the excitotoxic mechanisms leading to death. However, it is not known which step of these mechanisms is affected by mGluRs. The aims of this work were to assess: (a) whether activation of group I mGluRs (mGluR1 or mGluR5) impairs NMDA-induced activation of the glutamate-nitric oxide-cGMP pathway; (b) which mGluR (1 or 5) is responsible for this impairment and (c) whether impairment of the pathway occurs at the level of activation of soluble guanylate cyclase by nitric oxide or of activation of neuronal nitric oxide synthase (nNOS) by NMDA. It is shown that activation of mGluR1 enhances the function of the glutamate-nitric oxide-cGMP pathway by increasing activation of soluble guanylate cyclase by nitric oxide. In contrast, mGluR5 activation inhibits the glutamate-nitric oxide-cGMP pathway by reducing NMDA-induced activation of nNOS. This is due to reduced NMDA-induced increase in cAMP, reduced activation of Akt by cAMP and of nNOS by Akt. The impairment of activation of the glutamate-NO-cGMP pathway by activation of mGluR5 would contribute to its neuroprotective effect against excitotoxicity in cerebellar neurons in culture.
机译:在培养的小脑神经元中,第I组代谢型谷氨酸受体(mGluRs)的激活可防止谷氨酸和NMDA诱导的神经元死亡,表明它干扰了导致死亡的兴奋毒性机制。但是,尚不清楚这些机制的哪一步受到mGluR的影响。这项工作的目的是评估:(a)第I组mGluRs(mGluR1或mGluR5)的激活是否损害NMDA诱导的谷氨酸-一氧化氮-cGMP途径的激活; (b)哪个mGluR(1或5)造成了这种损伤,以及(c)该途径的损伤是否发生在一氧化氮激活可溶性鸟苷酸环化酶或NMDA激活神经元一氧化氮合酶(nNOS)的水平上。结果表明,mGluR1的激活通过增加一氧化氮对可溶性鸟苷酸环化酶的激活而增强了谷氨酸一氧化氮-cGMP途径的功能。相反,mGluR5激活可通过减少NMDA诱导的nNOS激活来抑制谷氨酸一氧化氮-cGMP途径。这是由于NMDA诱导的cAMP增加减少,cAMP对Akt的激活减少以及Akt对nNOS的激活减少。通过激活mGluR5来破坏谷氨酸-NO-cGMP途径的激活将有助于其对培养物中小脑神经元兴奋性毒性的神经保护作用。

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