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海鲶鱼(Plotosus)紧张性电感受器中的受体钙电流和钙门控钾电流。

Receptor Ca current and Ca-gated K current in tonic electroreceptors of the marine catfish Plotosus.

作者信息

Sugawara Y, Obara S

机构信息

Department of Physiology, Teikyo University School of Medicine, Tokyo, Japan.

出版信息

J Gen Physiol. 1989 Feb;93(2):343-64. doi: 10.1085/jgp.93.2.343.

Abstract

The tonic electroreceptors of the marine catfish Plotosus consist of a cluster of ampullae of sensory epithelia, each of which is an isolated receptor unit that is attached to the distant skin with only a long duct. The single-cell layered sensory epithelium has pear-shaped receptor cells interspersed with thin processes of supporting cells. The apical border of the receptor cells is joined to the supporting cells with junctional complexes. Single ampullae were excised and electrically isolated by an air gap. Receptor responses were recorded as epithelial current under voltage clamp, and postsynaptic potentials (PSP) were recorded externally from the afferent nerve in the presence of tetrodotoxin. The ampulla showed a DC potential of -19.2 +/- 6.5 mV (mean +/- SD, n = 18), and an input resistance of 697 +/- 263 K omega (n = 21). Positive voltage steps evoked inward currents with two peaks and a positive dip, associated with PSPs. The apical membrane proved to be inactive. The inward current was ascribed to Ca current, and the positive dip to Ca-gated transient K current, bot in the basal membrane of receptor cells. The Ca channels proved to have ionic selectivity in the order of Sr2+ greater than Ca2+ greater than Ba2+, and presumably they also passed outward current nonselectively. Double-pulse experiments further revealed a current-dependent inactivation for a part of the Ca current.

摘要

海鲶鱼(Plotosus)的紧张性电感受器由一群感觉上皮的壶腹组成,每个壶腹都是一个独立的感受器单元,仅通过一条长导管与远处的皮肤相连。单层细胞的感觉上皮中有梨形的感受器细胞,其间散布着支持细胞的细突起。感受器细胞的顶端边界通过连接复合体与支持细胞相连。单个壶腹被切除并通过气隙进行电隔离。在电压钳制下,感受器反应记录为上皮电流,在存在河豚毒素的情况下,从传入神经外部记录突触后电位(PSP)。壶腹显示出-19.2±6.5 mV的直流电位(平均值±标准差,n = 18),输入电阻为697±263 KΩ(n = 21)。正向电压阶跃诱发具有两个峰值和一个正波谷的内向电流,与PSP相关。顶端膜被证明是无活性的。内向电流归因于Ca电流,正波谷归因于受体细胞基底膜中的Ca门控瞬时K电流。Ca通道被证明具有离子选择性,顺序为Sr2+>Ca2+>Ba2+,并且推测它们也非选择性地通过外向电流。双脉冲实验进一步揭示了一部分Ca电流的电流依赖性失活。

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