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两栖类交感神经突触处的肽能和毒蕈碱能兴奋

Peptidergic and muscarinic excitation at amphibian sympathetic synapses.

作者信息

Kuffler S W, Sejnowski T J

出版信息

J Physiol. 1983 Aug;341:257-78. doi: 10.1113/jphysiol.1983.sp014805.

Abstract

A single-electrode voltage clamp was used to study the slow muscarinic and late slow peptidergic excitatory post-synaptic currents (e.p.s.c.s) in B cells of the paravertebral sympathetic ganglia of the bull-frog. Conductance decreases were measured during peptidergic e.p.s.c.s in nearly all cells at clamped potentials near the resting level. In about half of the cells the size of the peptidergic e.p.s.c.s increased with hyperpolarization and in some of these cells conductance increases were found at hyperpolarized levels. In the remaining cells conductance decreases occurred at all levels of membrane potential tested, and in a few of these the polarity of the e.p.s.c.s reversed at hyperpolarized potentials. A similar diversity was observed among muscarinic e.p.s.c.s. At least two simple ionic mechanisms are required to explain the heterogeneous voltage dependencies observed: a conductance decrease primarily to K+ that dominates at depolarized potentials and a conductance increase to other ions that is more prominent at hyperpolarized potentials. The proportion of these two mechanisms appears to differ among B cells. The two slow e.p.s.c.s recorded in the same neurone had the same voltage dependence and were accompanied by the same conductance changes in each of eight cells despite differences between cells. The muscarinic e.p.s.c. was reduced during the peptidergic e.p.s.c. in each of twenty-five neurones tested over a range of membrane potentials. Externally-applied luteinizing hormone releasing hormone (LHRH) produced currents with the same voltage dependence and conductance changes as the nerve-evoked peptidergic e.p.s.c. in each of fifteen cells tested. Bethanechol, a muscarinic agonist, and LHRH produced currents with the same voltage dependence and conductance changes in each of the twelve cells studied. In several cells a saturating response to a prolonged application of LHRH completely occluded the response to bethanechol, and vice versa. Slow currents were recorded from dissociated cell bodies in response to bethanechol and LHRH; these responses exhibited the same diversity of voltage dependence and conductance changes as was observed in intact ganglia. Activation of muscarinic and peptidergic receptors may control shared ionic mechanisms in single ganglion cells.

摘要

采用单电极电压钳技术研究牛蛙椎旁交感神经节B细胞中缓慢的毒蕈碱能和晚期缓慢肽能兴奋性突触后电流(e.p.s.c.s)。在接近静息水平的钳制电位下,几乎所有细胞在肽能e.p.s.c.s期间都测量到电导降低。在大约一半的细胞中,肽能e.p.s.c.s的大小随超极化而增加,并且在其中一些细胞中,在超极化水平发现电导增加。在其余细胞中,在所有测试的膜电位水平上都发生电导降低,并且在其中一些细胞中,e.p.s.c.s的极性在超极化电位下反转。在毒蕈碱能e.p.s.c.s中也观察到类似的多样性。至少需要两种简单的离子机制来解释观察到的异质电压依赖性:一种主要是对K+的电导降低,在去极化电位时占主导,另一种是对其他离子的电导增加,在超极化电位时更明显。这两种机制的比例在B细胞之间似乎有所不同。在同一个神经元中记录到的两种缓慢e.p.s.c.s具有相同的电压依赖性,并且在八个细胞中的每一个中,尽管细胞之间存在差异,但都伴随着相同的电导变化。在测试的25个神经元中的每一个中,在一系列膜电位下,肽能e.p.s.c.s期间毒蕈碱能e.p.s.c.都降低。在测试的15个细胞中的每一个中,外部施加的促黄体生成素释放激素(LHRH)产生的电流与神经诱发的肽能e.p.s.c.具有相同的电压依赖性和电导变化。毒蕈碱激动剂氨甲酰甲胆碱和LHRH在研究的12个细胞中的每一个中产生的电流具有相同的电压依赖性和电导变化。在几个细胞中,对长时间应用LHRH的饱和反应完全阻断了对氨甲酰甲胆碱的反应,反之亦然。从解离的细胞体记录到对氨甲酰甲胆碱和LHRH的缓慢电流;这些反应表现出与完整神经节中观察到的相同的电压依赖性和电导变化多样性。毒蕈碱能和肽能受体的激活可能控制单个神经节细胞中的共享离子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d151/1195334/5d51e141bc27/jphysiol00654-0274-a.jpg

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