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The inositol 145-trisphosphate pathway mediates cholinergic potentiation of rat hippocampal neuronal responses to NMDA.

机译:肌醇145-三磷酸途径介导了大鼠海马神经元对NMDA的胆碱能增强作用。

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摘要

1. The cellular mechanism by which acetylcholine (ACh) potentiates neuronal responses to N-methyl-D-aspartate (NMDA) was investigated in CA1 neurones of hippocampal slices using current- and voltage-clamp techniques. 2. Loading cells with 5'-guanylylimidodiphosphate (GppNHp) caused a gradual increase in response to NMDA. Pulses of ACh accelerated this increase. Guanosine 5'-O-(2-thiodiphosphate) (GDP beta S) blocked the potentiating effect of ACh on responses to NMDA. 3. Acute LiCl caused a gradual decrease in the potentiating effect of ACh, while the potentiation was completely prevented by 3 day chronic 6 mequiv/kg (I.P.) LiCl treatment and restored by acute treatment with 10 mM-inositol. 4. Loading cells with a general protein kinase inhibitor, H-7, enhanced the potentiating effect of ACh on responses to NMDA and blocked the effect of ACh on the after-hyperpolarization (AHP). 5. Ultraviolet irradiation of cells loaded with a photolabile inositol 1,4,5-trisphosphate (InsP3) caused a transient increase in responses to NMDA, while penetrating cells with active InsP3-containing pipettes caused a gradual BAPTA-sensitive increase in responses to NMDA. 6. Reducing the rate of InsP3 metabolism, with 2,3-diphosphoglyceric acid (DPG), caused an increase and prolongation of the potentiating effect of ACh, while blocking the InsP3 receptor with heparin prevented the cholinergic potentiation. 7. NMDA, by itself, potentiated subsequent responses to NMDA, an effect that was blocked when [Ca2+]i was chelated with BAPTA. NMDA and ACh were also found to compete in potentiating responses to NMDA. Finally, the cholinergic potentiation was blocked when cells were loaded with BAPTA. 8. We propose that activation of the InsP3 branch of the phosphoinositide pathway potentiated responses to NMDA and that InsP3 exerted this effect by elevating [Ca2+]i.
机译:1.使用电流钳和电压钳技术研究了海马切片CA1神经元中乙酰胆碱(ACh)增强对N-甲基-D-天冬氨酸(NMDA)的神经元反应的细胞机制。 2.用5'-鸟苷二磷酸(GppNHp)加载细胞导致对NMDA的反应逐渐增加。乙酰胆碱的脉冲加速了这种增加。鸟苷5'-O-(2-硫代二磷酸)(GDP beta S)阻断了ACh对NMDA的应答的增强作用。 3.急性LiCl导致ACh的增强作用逐渐降低,而3天的长期6 mequiv / kg(I.P.)LiCl处理完全阻止了这种增强,并通过10 mM肌醇的急性治疗得以恢复。 4.用普通的蛋白激酶抑制剂H-7加载细胞,可增强ACh对NMDA应答的增强作用,并阻止ACh对超极化后(AHP)的作用。 5.紫外线照射装载有光不稳定的肌醇1,4,5-三磷酸(InsP3)的细胞会导致对NMDA的反应短暂增加,而穿透含活性InsP3的移液管的细胞会导致BAPTA敏感的NMDA逐渐增加。 6.用2,3-二磷酸甘油酸(DPG)降低InsP3的代谢速率,导致ACh增强作用的增加和延长,而用肝素阻断InsP3受体则阻止了胆碱能的增强。 7. NMDA本身增强了对NMDA的后续反应,这种作用在[Ca2 +] i与BAPTA螯合时被阻断。还发现NMDA和ACh在增强对NMDA的反应中竞争。最后,当细胞加载BAPTA时,胆碱能增强被阻断。 8.我们提出,磷酸肌醇途径的InsP3分支的激活增强了对NMDA的反应,并且InsP3通过提高[Ca2 +] i发挥了这种作用。

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