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Dopamine modulates Ih in a motor axon.

机译:多巴胺在电机轴突中调节IH。

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We studied the axons of the pyloric dilator neurons in the stomatogastric nervous system of the lobster. The several-centimeters-long portions of these axons in the motor nerves depolarize in response to low concentrations of dopamine (DA) and exhibit peripheral spike initiation in the absence of centrally generated activity. This effect is inhibited by blockers of hyperpolarization-activated inward current (I(h)). We show here that peripheral spike initiation was also elicited by D(1)-type receptor agonists and drugs that increase cAMP. This suggests that DA acts via a D(1)-type receptor mechanism to modulate hyperpolarization-activated cyclic nucleotide-gated channels. We used two-electrode voltage clamp of the axon to directly study the effect of DA on I(h). Surprisingly, DA decreased the maximal conductance. However, because of a shift of the activation curve to more depolarized potentials, and a change in the slope, conductance was increased at biologically relevant membrane potentials. These changes were solely caused by modulation of I(h), as DA had no discernible effect when I(h) was blocked. In addition, they were not induced by repeated activation and could be mimicked by application of drugs that increase cAMP concentration. DA modulation of I(h) persisted in the presence of a protein kinase A inhibitor and is therefore potentially mediated by a phosphorylation-independent direct effect of cAMP on the ion channel. A computer model of the axon showed that the changes in maximal conductance and voltage dependence were not qualitatively affected by space-clamp problems.
机译:我们研究了龙虾的孔径神经系统中幽门扩张衣神经元的轴突。这些轴突在电机神经中的几厘米长的部分响应于低浓度的多巴胺(DA)并在没有中央产生的活性的情况下表现出外周尖峰引发。通过过度极化激活的向内电流(I(H))阻断抑制这种效果。我们在这里展示了D(1)型受体激动剂和增加营地的D(1)型受体激动剂和药物引发了外周尖峰发芽。这表明DA通过D(1)型受体机制作用以调节超极化激活的循环核苷酸门控通道。我们使用了轴突的两电极电压夹,直接研究DA在I(H)上的效果。令人惊讶的是,DA减少了最大的电导。然而,由于活化曲线的偏移到更加偏振的电位,并且在生物相关膜电位下增加了斜率的变化。这些变化仅是由I(H)的调节引起的,因为当I(H)被阻断时DA没有可辨别的效果。此外,它们未被重复的激活诱导,并且可以通过施加增加CAMP浓度的药物来模仿。在蛋白激酶存在抑制剂的情况下持续存在I(H)的DA调节,因此可能通过离子通道上的壳体的磷酸化无关的直接效应来介导。 Axon的计算机模型显示最大电导和电压依赖性的变化不受空间钳位问题的质量影响。

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