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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Adenosine A1 receptors inhibit GABAergic transmission in rat tuberomammillary nucleus neurons.
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Adenosine A1 receptors inhibit GABAergic transmission in rat tuberomammillary nucleus neurons.

机译:腺苷A1受体抑制大鼠结核性乳头状核神经元的GABA能传递。

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摘要

The adenosinergic modulation of GABAergic spontaneous miniature inhibitory postsynaptic currents (mIPSCs) was investigated in mechanically dissociated rat tuberomammillary nucleus (TMN) neurons using a conventional whole-cell patch clamp technique. Adenosine (100 microM) reversibly decreased mIPSC frequency without affecting the current amplitude, indicating that adenosine acts presynaptically to decrease the probability of spontaneous GABA release. The adenosine action on GABAergic mIPSC frequency was completely blocked by 1 microM DPCPX, a selective A(1) receptor antagonist, and mimicked by 1 microM CPA, a selective A(1) receptor agonist. This suggests that presynaptic A(1) receptors were responsible for the adenosine-mediated inhibition of GABAergic mIPSC frequency. CPA still decreased GABAergic mIPSC frequency even either in the presence of 200 microM Cd(2+), a general voltage-dependent Ca(2+) channel blocker, or in the Ca(2+)-free external solution. However, the inhibitory effect of CPA on GABAergic mIPSC frequency was completely occluded by 1 mM Ba(2+), a G-protein coupled inwardly rectifying K(+) (GIRK) channel blocker. In addition, the CPA-induced decrease in mIPSC frequency was completely occluded by either 100 microM SQ22536, an adenylyl cyclase (AC) inhibitor, or 1 muM KT5720, a specific protein kinase A (PKA) inhibitor. The results suggest that the activation of presynaptic A(1) receptors decreases spontaneous GABAergic transmission onto TMN neurons via the modulation of GIRK channels as well as the AC/cAMP/PKA signal transduction pathway. This adenosine A(1) receptor-mediated modulation of GABAergic transmission onto TMN neurons may play an important role in the fine modulation of the excitability of TMN histaminergic neurons as well as the regulation of sleep-wakefulness.
机译:使用常规的全细胞膜片钳技术,在机械解离的大鼠结核乳头状核(TMN)神经元中研究了GABA能自发微型抑制突触后电流(mIPSC)的腺苷能调节。腺苷(100 microM)可逆地降低mIPSC频率,而不会影响电流幅度,这表明腺苷先天地起作用以降低自发GABA释放的可能性。腺苷对GABA能mIPSC频率的作用被1 microM DPCPX(一种选择性的A(1)受体拮抗剂)完全阻断,并由1 microM CPA(一种选择性的A(1)受体激动剂)模拟。这表明突触前A(1)受体负责腺苷介导的GABA能mIPSC频率的抑制作用。即使在存在200 microM Cd(2+),一般的电压依赖性Ca(2+)通道阻滞剂或无Ca(2+)外部溶液的情况下,CPA仍会降低GABA能的mIPSC频率。但是,CPA对GABA能mIPSC频率的抑制作用完全被1 mM Ba(2 +)(一种G蛋白偶联的内向整流K(+)(GIRK)通道阻滞剂)所阻断。此外,CPA诱导的mIPSC频率降低完全被100 microM SQ22536(一种腺苷酸环化酶(AC)抑制剂)或1μMKT5720(一种特定的蛋白激酶A(PKA)抑制剂)完全阻止。结果表明,突触前A(1)受体的激活通过GIRK通道以及AC / cAMP / PKA信号转导通路的调节,减少自发GABA能传递至TMN神经元。腺苷A(1)受体介导的GABA能传递到TMN神经元上的调节可能在TMN组胺能神经元的兴奋性的精细调节以及睡眠觉醒的调节中起重要作用。

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