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在象鼻鱼的电感觉叶中,GABA能中间神经元的快速激活以及可能的不依赖钙的GABA释放。

Rapid activation of GABAergic interneurons and possible calcium independent GABA release in the mormyrid electrosensory lobe.

作者信息

Han V Z, Grant K, Bell C C

机构信息

Neurological Sciences Institute, Oregon Health Sciences University, Portland, Oregon 97209, USA.

出版信息

J Neurophysiol. 2000 Mar;83(3):1592-604. doi: 10.1152/jn.2000.83.3.1592.

Abstract

The primary afferent fibers from the electroreceptors of mormyrid electric fish terminate centrally in the granular layer of the electrosensory lobe (ELL). This study examines the excitatory and inhibitory processes that take place in this layer using an in vitro slice preparation and field potentials evoked by stimulation of primary afferent fibers in the deep fiber layer of ELL. The postsynaptic response to stimulation of the afferent fibers was still present after blocking chemical transmission in three different ways: by adding glutamate receptor antagonists to the medium, by substituting a nominally calcium-free medium for normal medium, and by blocking calcium channels with cadmium. Blockade of chemical transmission was demonstrated by disappearance of control responses to parallel fiber stimulation. The continued presence of a postsynaptic response in the absence of chemical excitation is consistent with previous anatomic and physiological evidence for electrical synapses between afferent fibers and granular cells in ELL. Granular cell activation by primary afferent fibers was followed by a powerful, short-latency inhibition mediated by GABA and GABA(A) receptors, as indicated by a large increase in the postsynaptic response to afferent fiber stimulation following application of the GABA(A) receptor antagonist, bicuculline. Bicuculline caused a marked increase of the postsynaptic response even after chemical synaptic excitation had been blocked by glutamate receptor antagonists, by a calcium-free medium, or by cadmium. Thus activation of the inhibitory interneurons responsible for GABA release did not require chemical excitation. Nonchemical excitation of the inhibitory interneurons could be mediated either by electrical synapses between afferent fibers and inhibitory interneurons, or by nonsynaptic activation of the large GABAergic terminals that are known to be present on granular cells. The marked increase of the postsynaptic response caused by bicuculline in a calcium-free medium or in the presence of cadmium suggests that the release of GABA by inhibitory terminals was not entirely dependent on calcium influx. This effect of bicuculline on the postsynaptic response in a calcium-free medium or in the presence of cadmium was markedly reduced by prior addition of the GABA transporter antagonist, nipecotic acid. Thus calcium-independent release of GABA may occur in ELL and may be partly dependent on reversal of a GABA transporter. Rapid and powerful inhibition at the first stage in the processing of electrosensory information could serve to enhance the small differences in latency among afferent fibers that appear to encode small differences in stimulus intensity.

摘要

来自裸臀鱼目电鱼电感受器的初级传入纤维在中枢终止于电感觉叶(ELL)的颗粒层。本研究使用体外脑片标本以及通过刺激ELL深层纤维层中的初级传入纤维诱发的场电位,来研究该层中发生的兴奋和抑制过程。在通过三种不同方式阻断化学传递后,对传入纤维刺激的突触后反应仍然存在:向培养基中添加谷氨酸受体拮抗剂、用名义上无钙的培养基替代正常培养基以及用镉阻断钙通道。通过对平行纤维刺激的对照反应消失证明了化学传递的阻断。在没有化学兴奋的情况下突触后反应的持续存在与先前关于ELL中传入纤维和颗粒细胞之间存在电突触的解剖学和生理学证据一致。初级传入纤维激活颗粒细胞后,会引发由GABA和GABA(A)受体介导的强大的短潜伏期抑制,这表现为在应用GABA(A)受体拮抗剂荷包牡丹碱后,对传入纤维刺激的突触后反应大幅增加。即使在化学突触兴奋已被谷氨酸受体拮抗剂、无钙培养基或镉阻断后,荷包牡丹碱仍会导致突触后反应显著增加。因此,负责释放GABA的抑制性中间神经元的激活并不需要化学兴奋。抑制性中间神经元的非化学兴奋可能由传入纤维与抑制性中间神经元之间的电突触介导,或者由已知存在于颗粒细胞上的大型GABA能终末的非突触激活介导。在无钙培养基中或存在镉的情况下,荷包牡丹碱引起的突触后反应显著增加表明抑制性终末释放GABA并不完全依赖于钙内流。在预先添加GABA转运体拮抗剂尼克酸后,荷包牡丹碱在无钙培养基中或存在镉的情况下对突触后反应的这种作用显著降低。因此,ELL中可能发生GABA的钙非依赖性释放,并且可能部分依赖于GABA转运体的逆向转运。在电感觉信息处理的第一阶段进行快速而强大的抑制,可能有助于增强传入纤维之间潜伏期的微小差异,这些差异似乎编码了刺激强度的微小差异。

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