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突触前促代谢型谷氨酸受体调节大鼠延髓中对ω-芋螺毒素-GVIA不敏感的钙通道。

Presynaptic metabotropic glutamate receptors modulate omega-conotoxin-GVIA-insensitive calcium channels in the rat medulla.

作者信息

Glaum S R, Miller R J

机构信息

Department of Pharmacological and Physiological Sciences, University of Chicago, IL 60637, USA.

出版信息

Neuropharmacology. 1995 Aug;34(8):953-64. doi: 10.1016/0028-3908(95)00076-i.

Abstract

We have previously demonstrated that the metabotropic glutamate receptor (mGluR) agonist (1S,3R)-1 aminocyclopentane-1,3-dicarboxylate (ACPD) presynaptically inhibits evoked glutamatergic EPSCs and GABAergic IPSCs in patch clamped rat nucleus tractus solitarius (NTS) neurons recorded in this slices. The present study investigated the pharmacology of the presynaptic mGluRs, the the voltage dependent Ca2+ channel (VDCC) subtypes supporting neurotransmitter release, and possible interactions between the two. Monosynaptic EPSCs or IPSCs were evoked by electrical stimulation in the region of the tractus solitarius (TS). The effects of the mGluR agonists ACPD, (2S,3S,4S)-alpha-(carboxycyclopropyl)glycine (L-CCG-I) and L-2-amino-4-phosphonobutyrate (AP4) were examined upon EPSCs. The effects of the above compounds and quisqualate (QUIS) were examined upon IPSCs. L-CCG-I proved the most potent inhibitor of EPSCs and IPSCs. The VDCC blockers omega-AGA-IVA (AGA), omega-conotoxin GVIA (GVIA), omega-conotoxin MVIIC (MVIIC) and nimodipine (NIM) were assessed for their ability to inhibit monosynaptic EPSCs and IPSCs. EPSCs were inhibited by GVIA >> AGA > or = MVIIC. IPSCs were inhibited by AGA > or = MVIIC >> GVIA. NIM was without effect on the EPSC or IPSC. The potency of mGluR inhibition of evoked synaptic transmission was assessed in the absence and following treatment with VDCC blockers. mGluR agonists blocked a greater percentage of the EPSC or IPSC following treatment with GVIA, but not the other VDCC antagonists, than under control conditions. We have previously demonstrated that the postsynaptic inhibitory effects of mGluR activation upon GABAA mediated currents can be mimicked by cyclic guanosine monophosphate (cGMP) analogs. The cGMP-dependent protein kinase (PKG) inhibitors H8 and Rp-8-4-chlorophenylthio-guanosine-3',5'-cyclic monophosphorothioate (Rp-cG) blocked mGluR inhibition of GABAA mediated currents without blocking the ability of mGluR agonists to inhibit the IPSC. The effect of L-CCGI was enhanced following treatment with GVIA in the presence of Rp-cG, confirming a presynaptic locus of mGluR mediated inhibition of the IPSC. In contrast, cGMP analogues potentiate postsynaptic responses to glutamate agonists but depress the EPSC. As with the mGluR agonists, the inhibition of the EPSC by cGMP was potentiated following treatment with GVIA. These results suggest that presynaptic mGluR reduce both glutamate release from afferent fibers and GABA release from inhibitory interneurons following electrical stimulation in the region of the TS. Although different VDCCs support the majority of glutamate and GABA release and mGluR effects on release appear to utilize differing intracellular pathways, presynaptic GVIA-insensitive VDCCs are favorably targeted for inhibition by mGluR agonists.

摘要

我们之前已经证明,代谢型谷氨酸受体(mGluR)激动剂(1S,3R)-1-氨基环戊烷-1,3-二羧酸(ACPD)在突触前抑制本切片中膜片钳记录的大鼠孤束核(NTS)神经元诱发的谷氨酸能兴奋性突触后电流(EPSCs)和γ-氨基丁酸能抑制性突触后电流(IPSCs)。本研究调查了突触前mGluRs的药理学特性、支持神经递质释放的电压依赖性Ca2+通道(VDCC)亚型,以及两者之间可能的相互作用。通过电刺激孤束(TS)区域诱发单突触EPSCs或IPSCs。研究了mGluR激动剂ACPD、(2S,3S,4S)-α-(羧基环丙基)甘氨酸(L-CCG-I)和L-2-氨基-4-膦酸丁酸(AP4)对EPSCs的影响。研究了上述化合物和quisqualate(QUIS)对IPSCs的影响。L-CCG-I被证明是EPSCs和IPSCs最有效的抑制剂。评估了VDCC阻滞剂ω-蛛毒素-IVA(AGA)、ω-芋螺毒素GVIA(GVIA)、ω-芋螺毒素MVIIC(MVIIC)和尼莫地平(NIM)抑制单突触EPSCs和IPSCs的能力。GVIA对EPSCs的抑制作用>> AGA ≥ MVIIC。AG A ≥ MVIIC >> GVIA对IPSCs有抑制作用。NIM对EPSC或IPSC无影响。在不存在和使用VDCC阻滞剂处理后,评估了mGluR对诱发突触传递的抑制效力。与对照条件相比,用GVIA处理后,mGluR激动剂阻断的EPSC或IPSC的百分比更高,但用其他VDCC拮抗剂处理后则不然。我们之前已经证明,mGluR激活对GABAA介导电流的突触后抑制作用可被环鸟苷单磷酸(cGMP)类似物模拟。cGMP依赖性蛋白激酶(PKG)抑制剂H8和Rp-8-4-氯苯硫代鸟苷-3',5'-环一磷酸硫代酯(Rp-cG)阻断了mGluR对GABAA介导电流的抑制作用,但未阻断mGluR激动剂抑制IPSC的能力。在Rp-cG存在的情况下,用GVIA处理后,L-CCGI的作用增强,证实了mGluR介导的IPSC抑制作用的突触前位点。相比之下,cGMP类似物增强了对谷氨酸激动剂的突触后反应,但降低了EPSC。与mGluR激动剂一样,用GVIA处理后,cGMP对EPSC的抑制作用增强。这些结果表明,突触前mGluR在电刺激TS区域后,减少了传入纤维释放的谷氨酸和抑制性中间神经元释放的GABA。虽然不同的VDCC支持大部分谷氨酸和GABA的释放,且mGluR对释放的影响似乎利用了不同的细胞内途径,但突触前对GVIA不敏感的VDCC是mGluR激动剂抑制的有利靶点。

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