首页> 外文OA文献 >Augmentation of bursting pacemaker activity by egg-laying hormone in Aplysia neuron R15 is mediated by a cyclic AMP-dependent increase in Ca2+ and K+ currents.
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Augmentation of bursting pacemaker activity by egg-laying hormone in Aplysia neuron R15 is mediated by a cyclic AMP-dependent increase in Ca2+ and K+ currents.

机译:海葵神经元R15中产卵激素对起搏起搏器活动的增强作用是由Ca2 +和K +电流的环状AMP依赖性增加介导的。

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摘要

Release of the neuropeptide egg-laying hormone (ELH) from Aplysia bag cell neurons augments the endogenous bursting pacemaker activity of neuron R15. We have studied the ionic mechanisms underlying the effect of ELH in voltage-clamped R15 neurons. Both electrical discharge of the bag cells, which releases endogenous ELH, and application of synthetic ELH on cell R15 result in an increase in two discrete ionic currents. One of these currents activates with hyperpolarization, reverses near the K+ equilibrium potential, is sensitive to the external K+ concentration, and is blocked by addition of 5 mM Rb+ or 1 mM Ba2+ to the bathing medium. This current appears to be identical to the inwardly rectifying K+ current IR. The other current activates with depolarization and is blocked by replacement of external Ca2+ with Co2+ or Mn2+. This current appears to be a voltage-gated Ca2+ current ICa. Both ICa and IR in R15 have previously been shown to be enhanced by the neurotransmitter serotonin, acting via intracellular cyclic AMP. We now report that increasing cyclic AMP in R15, by applying either serotonin or the adenylate cyclase activator forskolin together with a phosphodiesterase inhibitor, mimics and occludes the action of ELH on neuron R15. Furthermore, application of ELH increases the cyclic AMP content of single R15 neurons, as measured by radioimmunoassay. Finally, the effects of ELH are potentiated by a phosphodiesterase inhibitor. These results suggest that ELH augments bursting activity in R15 by causing cyclic AMP-mediated increases in IR and ICa.
机译:从Aplysia袋细胞神经元释放神经肽产蛋激素(ELH)可增强神经元R15的内源性起搏起搏器活性。我们已经研究了电压钳制的R15神经元中ELH作用的离子机制。袋式电池的放电(释放内源性ELH)和合成ELH在电池R15上的应用都会导致两个离散离子电流的增加。这些电流之一通过超极化激活,在K +平衡电位附近反转,对外部K +浓度敏感,并通过向沐浴介质中添加5 mM Rb +或1 mM Ba2 +来阻止。该电流似乎与向内整流的K +电流IR相同。另一个电流通过去极化激活,并通过用Co2 +或Mn2 +替代外部Ca2 +来阻止。该电流似乎是电压门控的Ca2 +电流ICa。先前已显示R15中的ICa和IR均可通过细胞内环状AMP发挥作用的神经递质血清素增强。我们现在报道,通过应用5-羟色胺或腺苷酸环化酶激活剂福司可林与磷酸二酯酶抑制剂一起增加R15中的环AMP,可模拟和阻断ELH对神经元R15的作用。此外,如通过放射免疫分析所测量的,ELH的应用增加了单个R15神经元的环AMP含量。最后,磷酸二酯酶抑制剂可增强ELH的作用。这些结果表明,ELH通过引起环状AMP介导的IR和ICa的增加而增强R15中的爆发活性。

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