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粗颈海蛞蝓B型光感受器轴突钙电流的基本特性

Elementary properties of axonal calcium currents in type B photoreceptors in Hermissenda crassicornis.

作者信息

Tamse Catherine T, Yamoah Ebenezer N

机构信息

Center for Neuroscience, Department of Otolaryngology, University of California, Davis, Davis, California 95616, USA.

出版信息

J Neurosci. 2002 Dec 15;22(24):10533-8. doi: 10.1523/JNEUROSCI.22-24-10533.2002.

Abstract

Axons of the type B photoreceptors form synapses with hair cells and interneurons that are involved in classical conditioning in Hermissenda. We examined the differences in the Ca2+ channels expressed in the soma and axons of the B photoreceptors by direct functional recordings of single-channel currents. Although the soma of the B cells express two Ca2+ current subtypes, a transient BayK 8644-insensitive (approximately 17 pS) current and a sustained BayK 8644-sensitive (approximately 10 pS) current, the axons expressed only the latter. The axonal Ca2+ current activated at potentials positive to -20 mV. Moreover, the Ca2+ channels are distributed heterogeneously along the length of the axon, with the higher channel density (approximately 10-15 channel microm(-2)) occurring at the distal one-third of the isolated axons, with respect to the soma. The regions of Ca2+ channel clusters may represent the presynaptic site of the photoreceptor-interneuron synapses. Furthermore, the high-density clusters of Ca2+ channels may augment postsynaptic responses. The results of the present study represent the first direct recordings of Ca2+ currents at presumed synaptic sites. Expression of different Ca2+ channel subtypes at distinct compartments of the type B photoreceptors may generate diverse Ca2+ domains that may be required for neuronal plasticity in Hermissenda.

摘要

B型光感受器的轴突与参与海兔经典条件反射的毛细胞和中间神经元形成突触。我们通过单通道电流的直接功能记录,研究了B型光感受器的胞体和轴突中表达的Ca2+通道的差异。虽然B细胞的胞体表达两种Ca2+电流亚型,一种短暂的对BayK 8644不敏感(约17 pS)的电流和一种持续的对BayK 8644敏感(约10 pS)的电流,但轴突仅表达后者。轴突Ca2+电流在正于-20 mV的电位时激活。此外,Ca2+通道沿轴突长度呈异质性分布,相对于胞体,在分离轴突的远端三分之一处通道密度较高(约10 - 15个通道/μm²)。Ca2+通道簇的区域可能代表光感受器 - 中间神经元突触的突触前位点。此外,Ca2+通道的高密度簇可能增强突触后反应。本研究结果代表了在假定突触位点对Ca2+电流的首次直接记录。B型光感受器不同区室中不同Ca2+通道亚型的表达可能产生不同的Ca2+区域,这可能是海兔神经元可塑性所必需的。

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