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未成熟加州海兔袋状细胞中Na+和Ca2+电流的特性

Characterization of Na+ and Ca2+ currents in bag cells of sexually immature Aplysia californica.

作者信息

Fieber L A

机构信息

Division of Marine Biology and Fisheries, University of Miami Rosenstiel School of Marine and Atmospheric Science, Miami, FL 33149-1098, USA.

出版信息

J Exp Biol. 1998 Mar;201(Pt 5):745-54.

PMID:9542153
Abstract

The neurosecretory bag cells of sexually mature Aplysia californica release egg-laying hormones as part of the reproductive process after a train of action potentials termed afterdischarge. Whole-cell voltage-clamp experiments were performed in cultured cells from sexually immature A. californica to characterize the inward voltage-gated currents for Na+ and Ca2+. The goal of these experiments was to investigate the regulation of excitability during sexual maturation. Na+ currents in bag cells of immature A. californica were similar in several ways to those of mature animals. The Na+ currents activated at voltages less negative than -30 mV and peaked at 10-20 mV in artificial sea water. The time course and pharmacology of bag cell Na+ currents were similar to those of bag cells from mature A. californica, although the Na+ current density was lower in immature A. californica. Na+ currents were inhibited by tetrodotoxin (50 nmol l-1). The Na+ current was relatively insensitive to depolarized holding potentials (Vh), maintaining approximately 50% of peak current amplitude present at Vh = -70 mV throughout the activation range at Vh = -30 mV. In experiments using a 1 s depolarized Vh prior to a test pulse, the half-inactivation voltage (V1/2) was -27 mV. Recovery of immature Na+ current from steady-state inactivation at Vh = -30 mV had a time constant (tau) of 9.5 ms, significantly slower than in mature animals. Ca2+ currents of immature A. californica activated at approximately -30 mV and peaked at approximately 20 mV with 11 mmol l-1 Ba2+ as the charge carrier. The principle differences from mature Ca2+ currents were the low density of the immature Ca2+ currents and their 'run-down' in whole-cell recordings. The pharmacology and V1/2 of bag cell Ca2+ currents were similar to those of L-type Ca2+ currents in mature cells. The Ca2+ currents were inhibited 61 +/- 10% by nifedipine (10 mumol l-1) and were unaffected by omega-conotoxin GVIA (10 mumol l-1). The Ca2+ currents were relatively insensitive to depolarized Vh, activating maximally at Vh = -90, -70 and -50 mV, and maintaining 50% of this peak current amplitude throughout the activation range at Vh = -30 mV. The V1/2 was -23 mV in experiments in which cells were subjected to a 1 s depolarized Vh prior to a test pulse. Na+ current amplitudes were maintained or increased during 1 min of 4 Hz test pulses in bag cells at Vh = -70 mV and Vh = -30 mV. In contrast, Ca2+ current run-down occurred during 1 min of 4 Hz test pulses in seven of 10 cells at Vh = -70 mV and in 12 of 12 cells at Vh = -30 mV. The observed scarcity of Na+ and Ca2+ currents in immature bag cells as well as the specific characteristics of immature bag cell Ca2+ currents make repetitive action potential firing and hormone release less likely than in mature bag cells.

摘要

性成熟的加州海兔的神经分泌袋状细胞在一系列称为后放电的动作电位之后,作为生殖过程的一部分释放产卵激素。对来自性未成熟加州海兔的培养细胞进行全细胞电压钳实验,以表征Na⁺和Ca²⁺的内向电压门控电流。这些实验的目的是研究性成熟过程中兴奋性的调节。未成熟加州海兔袋状细胞中的Na⁺电流在几个方面与成熟动物的相似。在人工海水中,Na⁺电流在比-30 mV更正的电压下激活,并在10 - 20 mV达到峰值。袋状细胞Na⁺电流的时间进程和药理学与成熟加州海兔的袋状细胞相似,尽管未成熟加州海兔的Na⁺电流密度较低。Na⁺电流被河豚毒素(50 nmol l⁻¹)抑制。Na⁺电流对去极化的钳制电位(Vh)相对不敏感,在Vh = -30 mV的整个激活范围内,保持在Vh = -70 mV时峰值电流幅度的约50%。在测试脉冲之前使用1 s去极化Vh的实验中,半失活电压(V1/2)为-27 mV。在Vh = -30 mV时,未成熟Na⁺电流从稳态失活中恢复的时间常数(tau)为9.5 ms,明显慢于成熟动物。未成熟加州海兔的Ca²⁺电流在约-30 mV激活,以11 mmol l⁻¹ Ba²⁺作为电荷载体时在约20 mV达到峰值。与成熟Ca²⁺电流的主要差异在于未成熟Ca²⁺电流的密度低及其在全细胞记录中的“衰减”。袋状细胞Ca²⁺电流的药理学和V1/2与成熟细胞中L型Ca²⁺电流相似。Ca²⁺电流被硝苯地平(10 μmol l⁻¹)抑制61±10%,且不受ω-芋螺毒素GVIA(10 μmol l⁻¹)影响。Ca²⁺电流对去极化Vh相对不敏感,在Vh = -90、-70和-50 mV时最大激活,并在Vh = -30 mV的整个激活范围内保持该峰值电流幅度的50%。在测试脉冲之前细胞经受1 s去极化Vh实验中,V1/2为-23 mV。在Vh = -70 mV和Vh = -30 mV时,袋状细胞在4 Hz测试脉冲1分钟期间Na⁺电流幅度保持或增加。相比之下,在Vh = -70 mV时,10个细胞中有7个,在Vh = -30 mV时,12个细胞中有12个,在4 Hz测试脉冲1分钟期间Ca²⁺电流出现衰减。在未成熟袋状细胞中观察到的Na⁺和Ca²⁺电流的稀少以及未成熟袋状细胞Ca²⁺电流的特定特征,使得重复动作电位发放和激素释放比成熟袋状细胞中更不可能发生。

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