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Protein kinase C mediates muscarinic block of intrinsic bursting in rat hippocampal neurons

机译:蛋白激酶C介导大鼠海马神经元内突的毒蕈碱阻断

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class="enumerated" style="list-style-type:decimal">Acetylcholine released from basal forebrain cholinergic fibres suppresses intrinsic bursting in cortical pyramidal cells through activation of muscarinic receptors. The signal transduction pathway mediating this action is not known. We used intracellular recordings from CA1 pyramidal cells in hippocampal slices to investigate the involvement of protein kinase C (PKC) in this cholinergic function.Bath-applied carbachol (CCh; 5 μM) consistently suppressed intrinsic bursting in an atropine-sensitive (1 μM) manner.Intrinsic bursting was suppressed by 4β-phorbol 12,13-dibutyrate (PDBu; 5-10 μM), a potent PKC activator, but not by the inactive phorbol ester 4α-phorbol 12,13-didecanoate (PDC; 50 μM). Prior application of the PKC inhibitor 1-(5-isoquinolinesulfonyl)-2-methylpiperazine dihydrochloride (H7; 10 μM) extracellularly or intracellularly prevented the PDBu effect.Pretreatment with H7, but not with the broad-spectrum kinase inhibitor N-(2-guanidino-ethyl)-5-isoquinoline-sulfonyl hydrochloride (HA1004; 10 μM), prevented the CCh-induced suppression of bursting.The active component of the spike after-depolarization (ADP) was reduced by CCh in an atropine-sensitive manner. This effect was mimicked by PDBu, but not by PDC. It was prevented by pretreatment with H7, but not with HA1004.Blocking most K+ currents with Ca2+-free, TEA-containing saline induced large TTX-sensitive plateau potentials lasting > 150 ms, driven by a persistent Na+ current. These potentials were suppressed by PDBu, but not by PDC. Pretreatment with H7 prevented the PDBu-induced suppression of the plateau potentials.We conclude that cholinergic suppression of intrinsic bursting in hippocampal CA1 pyramidal cells is mediated by muscarinic activation of PKC, which down-regulates the persistent Na+ current underlying slow depolarizing potentials in these neurons.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 从基底前脑胆碱能纤维释放的乙酰胆碱通过毒蕈碱受体的激活抑制皮质锥体细胞内在的爆发。介导此作用的信号转导途径尚不清楚。我们使用海马切片中CA1锥体细胞的细胞内记录来研究蛋白激酶C(PKC)参与这种胆碱能功能。 应用浴的卡巴胆碱(CCh; 5μM)持续抑制内在突触对阿托品敏感(1μM)的方式。 内源性爆发被有效的PKC激活剂4β-佛波酯12,13-二丁酸(PDBu; 5-10μM)抑制,但无活性佛波酯没有抑制12,13-十二烷酸4α-佛波醇(PDC; 50μM)。事先在细胞外或细胞内应用PKC抑制剂1-(5-异喹啉磺酰基)-2-甲基哌嗪二盐酸盐(H7; 10μM)可以防止PDBu的作用。 用H7预处理,但不能用广谱预处理激酶抑制剂N-(2-胍基-乙基)-5-异喹啉-磺酰盐酸盐(HA1004; 10μM)阻止了CCh诱导的猝发抑制。 去极化后尖峰的活性成分CCh以对阿托品敏感的方式降低(ADP)。 PDBu模仿了这种效果,而PDC则没有。可以用H7预处理,但不能用HA1004预防。 用不含Ca 2 + 的不含TEA的盐水阻断大多数K + 电流。持续的Na + 电流驱动的高TTX敏感高原电位持续> 150 ms。 PDBu抑制了这些潜力,但PDC却没有抑制。 H7预处理可防止PDBu诱导的高原电位抑制。 我们得出的结论是,胆碱能抑制海马CA1锥体细胞内在突增是由PKC的毒蕈碱激活介导的,其下调了持续性Na <这些神经元中的sup> + 当前潜在的缓慢去极化电位。

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