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Differential roles of signal transduction mechanisms in long-term potentiation of excitatory synaptic transmission induced by activation of group I mGluRs in the spinal trigeminal subnucleus oralis

机译:信号转导机制在脊髓三叉神经下核中I组mGluRs激活引起的兴奋性突触传递的长期增强中的不同作用

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摘要

Group I metabotropic glutamate receptors (mGluRl and 5) have been implicated in long-term potentiation (LTP), a persistent increase of synaptic efficiency, in the central nervous system including the spinal trigeminal nucleus (Vsp). In the ascending pathway from the caudalis (Vc) to the oralis (Vo) subnuclus in Vsp, it has been shown that the activation of group I mGluRs (mGluRl and 5) with their agonist (S)-3,5-dihydroxyphenylglycine (DHPG) produces a delayed type of LTP of excitatory synaptic transmission and this LTP was mediated by mGluRl. Further, this study attempts to pharmacologically characterize essential signaling components for the expression of DHPG-induced LTP. As a result, it is found that the group I mGluRs essentially use G protein-mediated activation of the phospholipase C (PLC) pathway to express the LTP. However, recruited signaling molecules following the activation of PLC are differentially involved in the expression of LTP: i.e. IP_3 receptor, intracellular Ca~(2+) rise, CaMKII and ERK function as positive regulators, whereas PKC as a negative regulator. Furthermore, both L-type voltage-dependent Ca~(2+) channel and canonical transient receptor potential channel positively contribute to the expression of LTP. Taken together, these results suggest that signaling molecules recruited by the activation of group I mGluRs collaboratively or oppositely control the optimal expression of synaptic plasticity at excitatory synapses in the Vo.
机译:在包括脊髓三叉神经核(Vsp)的中枢神经系统中,I类代谢型谷氨酸受体(mGluR1和5)与长期增强(LTP)有关,突触效率持续增加。在Vsp中从尾状核(Vc)到口腔内核(Vo)的上升途径中,已显示I类mGluRs(mGluR1和5)被其激动剂(S)-3,5-二羟基苯基甘氨酸(DHPG)激活)产生延迟型的兴奋性突触传递的LTP,并且该LTP由mGluR1介导。此外,该研究试图在药理上表征DHPG诱导的LTP表达的基本信号传导成分。结果,发现第I组mGluR基本上使用G蛋白介导的磷脂酶C(PLC)途径的活化来表达LTP。然而,PLC激活后募集的信号分子差异参与LTP的表达:即IP_3受体,细胞内Ca〜(2+)升高,CaMKII和ERK充当正调节剂,而PKC充当负调节剂。此外,L型电压依赖性Ca〜(2+)通道和规范的瞬态受体电位通道均对LTP的表达有积极作用。两者合计,这些结果表明,通过激活I组mGluRs募集的信号分子协同或相反地控制Vo中兴奋性突触的突触可塑性的最佳表达。

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