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甲壳纲动物基节感受器分离树突中的内向和外向电流。

Inward and outward currents in isolated dendrites of Crustacea coxal receptors.

作者信息

Mirolli M

出版信息

Cell Mol Neurobiol. 1983 Dec;3(4):355-70. doi: 10.1007/BF00734716.

Abstract

Segments from the nonspiking peripheral dendrites of a crustacean coxal receptor (T fiber) were studied using the voltage clamp technique. The peripheral endings of the T fiber are sensitive to stretch applied to a specialized receptor muscle by rotation of the coxa. The intraganglionary portion of the T fiber is presynaptic to the motor neurons innervating the coxal muscle. Depolarizing commands activated three separate fast channels: (i) a transient inward sodium current, INa, which is blocked by tetrodotoxin (TTX); (ii) a transient outward current, Io1 , having the same voltage-dependent characteristics as INa; and (iii) a second, longer-lasting, outward current, Io2 . Both INa and Io1 were inactivated when segments were clamped at voltages more positive than -50 mV, whereas Io2 could be activated at voltages more positive than -50 mV. Io1 and Io2 were blocked by 4-aminopyridine (4-AP) and by tetraethylammonium (TEA), although Io2 shows a greater sensitivity to TEA than Io1 . It is suggested that Io1 may be a factor in determining the nonspiking behavior of the dendrites and that Io2 may limit the stretch-induced depolarization in the dendrite to a value more negative than that at which the maximum rate of transmitter release occurs. In addition to the three fast currents, the presence of a slow inward and slow outward current could also be demonstrated. The effects of the slow currents were longer in segments cut from the proximal part of the dendrites.

摘要

利用电压钳技术研究了甲壳类动物的髋节感受器(T 纤维)的非脉冲性外周树突的节段。T 纤维的外周末梢对通过髋节旋转施加于特殊感受器肌肉的拉伸敏感。T 纤维的神经节内部分对支配髋节肌肉的运动神经元而言是突触前的。去极化指令激活了三个独立的快速通道:(i)一种短暂的内向钠电流 INa,它被河豚毒素(TTX)阻断;(ii)一种短暂的外向电流 Io1,其具有与 INa 相同的电压依赖性特征;以及(iii)第二种持续时间更长的外向电流 Io2。当节段钳制在比 -50 mV 更正的电压时,INa 和 Io1 均失活,而 Io2 可在比 -50 mV 更正的电压下被激活。Io1 和 Io2 被 4 - 氨基吡啶(4 - AP)和四乙铵(TEA)阻断,尽管 Io2 对 TEA 的敏感性比 Io1 更高。有人提出 Io1 可能是决定树突非脉冲性行为的一个因素,并且 Io2 可能将树突中拉伸诱导的去极化限制在一个比递质释放最大速率时更负的值。除了这三种快速电流外,还能证明存在一种缓慢的内向电流和缓慢的外向电流。从树突近端切下的节段中,缓慢电流的效应持续时间更长。

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Annu Rev Neurosci. 1980;3:141-67. doi: 10.1146/annurev.ne.03.030180.001041.

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