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Monoaminergic tone supports conductance correlations and stabilizes activity features in pattern generating neurons of the lobster Panulirus interruptus

机译:单胺能基调支持电导相关并稳定龙虾Panulirus Interruptus模式产生神经元的活动特征

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摘要

Experimental and computational studies demonstrate that different sets of intrinsic and synaptic conductances can give rise to equivalent activity patterns. This is because the balance of conductances, not their absolute values, defines a given activity feature. Activity-dependent feedback mechanisms maintain neuronal conductance correlations and their corresponding activity features. This study demonstrates that tonic nM concentrations of monoamines enable slow, activity-dependent processes that can maintain a correlation between the transient potassium current (IA) and the hyperpolarization activated current (Ih) over the long-term (i.e., regulatory change persists for hours after removal of modulator). Tonic 5 nM DA acted through an RNA interference silencing complex (RISC)- and RNA polymerase II-dependent mechanism to maintain a long-term positive correlation between IA and Ih in the lateral pyloric neuron (LP) but not in the pyloric dilator neuron (PD). In contrast, tonic 5 nM 5HT maintained a RISC-dependent positive correlation between IA and Ih in PD but not LP over the long-term. Tonic 5 nM OCT maintained a long-term negative correlation between IA and Ih in PD but not LP; however, it was only revealed when RISC was inhibited. This study also demonstrated that monoaminergic tone can also preserve activity features over the long-term: the timing of LP activity, LP duty cycle and LP spike number per burst were maintained by tonic 5 nM DA. The data suggest that low-level monoaminergic tone acts through multiple slow processes to permit cell-specific, activity-dependent regulation of ionic conductances to maintain conductance correlations and their corresponding activity features over the long-term.
机译:实验和计算研究表明,不同组的内在和突触电导可以产生等效的活动模式。这是因为电导的平衡而不是其绝对值定义了给定的活动特征。依赖于活动的反馈机制维持神经元电导相关性及其相应的活动特征。这项研究表明,补品nM浓度的单胺能够实现缓慢的,与活动有关的过程,该过程可以长期维持瞬态钾电流(IA)和超极化激活电流(Ih)之间的相关性(即,监管变化持续数小时)移除调制器后)。补药5 nM DA通过RNA干扰沉默复合物(RISC)和RNA聚合酶II依赖性机制起作用,以维持IA和Ih在外侧幽门神经元(LP)中而不是在幽门扩张神经元中的长期正相关性( PD)。相反,长期而言,补品5 nM 5HT在IA和Ih之间在PD中保持RISC依赖性正相关,而在LP中则不存在。 Tonic 5 nM OCT在PD中保持IA与Ih之间的长期负相关,而在LP中则不存在;但是,只有在RISC被抑制时才显示出来。这项研究还表明,单胺能调剂还可以长期保留活性特征:补药5 nM DA保持LP活性的时间,LP占空比和每次猝发的LP尖峰数。数据表明,低水平的单胺能基调通过多个缓慢的过程起作用,从而允许离子电导的细胞特异性,活性依赖性调节长期维持电导相关性及其相应的活性特征。

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