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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Pre- and Postsynaptic Effects of Glutamate in the Frog Labyrinth
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Pre- and Postsynaptic Effects of Glutamate in the Frog Labyrinth

机译:谷氨酸在青蛙迷宫中的预突触效应

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The role of glutamate in quantal release at the cytoneural junction was examined by measuring mEPSPs and afferent spikes at the posterior canal in the intact frog labyrinth. Release was enhanced by exogenous glutamate, ordl-TBOA, a blocker of glutamate reuptake. Conversely, drugs acting on ionotropic glutamate receptors did not affect release; the α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptor (AMPA-R) blocker CNQX decreased mEPSP size in a dose-dependent manner; the NMDA-R blockerd-AP5 at concentrations <200?μM did not affect mEPSP size, either in the presence or absence of Mg and glycine. In isolated hair cells, glutamate did not modify Ca currents. Instead, it systematically reduced the compound delayed potassium current, IKD, whereas the metabotropic glutamate receptor (mGluR)-II inverse agonist, (2S)-2-amino-2-[(1S,2S)-2-carboxycycloprop-1-yl]-3-(xanth-9-yl)propanoic acid (LY341495), increased it. Given mGluR-II decrease cAMP production, these finding are consistent with the reported sensitivity of IKD to protein kinase A (PKA)-mediated phosphorylation. LY341495 also enhanced transmitter release, presumably through phosphorylation-mediated facilitation of the release machinery. The observed enhancement of release by glutamate confirms previous literature data, and can be attributed to activation of mGluR-I that promotes Ca release from intracellular stores. Glutamate-induced reduction in the repolarizing IKD may contribute to facilitation of release. Overall, glutamate exerts both a positive feedback action on mGluR-I, through activation of the phospholipase C (PLC)/IP3path, and the negative feedback, by interfering with substrate phosphorylation through Gi/0-coupled mGluRs-II/III. The positive feedback prevails, which may explain the increase in overall rates of release observed during mechanical stimulation (symmetrical in the excitatory and inhibitory directions). The negative feedback may protect the junction from over-activation.
机译:谷氨酸的量子式释放的cytoneural结中的作用,在完整的青蛙迷宫后半规管测量mEPSPs和传入尖峰检查。发行由外源性谷氨酸,ordl-TBOA,谷氨酸摄取的阻断剂增强。相反,作用于离子型谷氨酸受体没有影响释放药物; α-2-氨基-3-羟基-5-甲基-4-异恶唑丙酸受体(AMPA-R)阻断剂CNQX以剂量依赖的方式降低mEPSP大小;的NMDA-R blockerd-AP5在浓度<200?μM不影响mEPSP大小,无论是在Mg和甘氨酸的存在或不存在。在分离的毛细胞,谷氨酸没有改变钙电流。相反,它系统地降低了化合物延迟钾电流,IKD,而代谢型谷氨酸受体(mGluR的)-II反向激动剂,(2S)-2-氨基-2 - [(1S,2S)-2- carboxycycloprop -1-基] -3-(赞斯系列-9-基)丙酸(LY341495),增加它。给定的mGluR-II降低cAMP产生,这些发现与IKD的蛋白质所报告灵敏度一致激酶A(PKA)介导的磷酸化。 LY341495也增强递质释放,可能是通过释放机械的磷酸化介导的便利。由谷氨酸释放的所观察到的增强证实了以前的文献数据,并且可以归因于的活化的mGluR-I促进从细胞内贮存释放钙。在复极IKD谷氨酸诱导的减少可能有助于释放的便利。总体而言,谷氨酸施加既通过磷脂酶C(PLC)的活化上的mGluR-I,一个正反馈作用/ IP3path,并且负反馈,通过GI /与底物磷酸化干扰0耦合的mGluR-II / III。正反馈盛行,这可以解释在释放的总速率的增加的机械刺激(在兴奋性和抑制方向对称)过程中观察到。负反馈可以保护交界处过度激活。

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