Johnson Bruce R, Kloppenburg Peter, Harris-Warrick Ronald M
Department of Neurobiology and Behavior, Cornell University, Ithaca, New York 14853, USA.
J Neurophysiol. 2003 Aug;90(2):631-43. doi: 10.1152/jn.00037.2003.
We examined the dopamine (DA) modulation of calcium currents (ICa) that could contribute to the plasticity of the pyloric network in the lobster stomatogastric ganglion. Pyloric somata were voltage-clamped under conditions designed to block voltage-gated Na+, K+, and H currents. Depolarizing steps from -60 mV generated voltage-dependent, inward currents that appeared to originate in electrotonically distal, imperfectly clamped regions of the cell. These currents were blocked by Cd2+ and enhanced by Ba2+ but unaffected by Ni2+. Dopamine enhanced the peak ICa in the pyloric constrictor (PY), lateral pyloric (LP), and inferior cardiac (IC) neurons and reduced peak ICa in the ventricular dilator (VD), pyloric dilator (PD), and anterior burster (AB) neurons. All of these effects, except for the AB, are consistent with DA's excitation or inhibition of firing in the pyloric neurons. Enhancement of ICa in PY and LP neurons and reduction of ICa in VD and PD neurons are also consistent with DA-induced synaptic strength changes via modulation of presynaptic ICa. However, the reduction of ICa in AB suggests that DA's enhancement of AB transmitter release is not directly mediated through presynaptic ICa. ICa in PY and PD neurons was more sensitive to nifedipine block than in AB neurons. In addition, nifedipine blocked DA's effects on ICa in the PY and PD neurons but not in the AB neuron. Thus the contribution of specific calcium channel subtypes carrying the total ICa may vary between pyloric neuron classes, and DA may act on different calcium channel subtypes in the different pyloric neurons.
我们研究了多巴胺(DA)对钙电流(ICa)的调节作用,这种调节可能有助于龙虾胃神经节中幽门网络的可塑性。在旨在阻断电压门控钠、钾和氢电流的条件下,对幽门神经元胞体进行电压钳制。从-60 mV开始的去极化步骤产生了电压依赖性内向电流,这些电流似乎起源于细胞电紧张性远端、钳制不完全的区域。这些电流被Cd2+阻断,被Ba2+增强,但不受Ni2+影响。多巴胺增强了幽门收缩肌(PY)、外侧幽门(LP)和下心(IC)神经元的ICa峰值,并降低了心室扩张肌(VD)、幽门扩张肌(PD)和前爆发神经元(AB)的ICa峰值。除AB神经元外,所有这些效应都与DA对幽门神经元放电的兴奋或抑制作用一致。PY和LP神经元中ICa的增强以及VD和PD神经元中ICa的降低也与DA通过调节突触前ICa引起的突触强度变化一致。然而,AB神经元中ICa的降低表明,DA对AB递质释放的增强并非直接通过突触前ICa介导。PY和PD神经元中的ICa比AB神经元对硝苯地平的阻断更敏感。此外,硝苯地平阻断了DA对PY和PD神经元中ICa的作用,但对AB神经元没有作用。因此,携带总ICa的特定钙通道亚型的贡献在不同类型的幽门神经元中可能有所不同,并且DA可能作用于不同幽门神经元中的不同钙通道亚型。