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大鼠胸腺淋巴细胞中与细胞内钙库释放相关的膜电位变化的分离与表征

Isolation and characterization of membrane potential changes associated with release of calcium from intracellular stores in rat thymic lymphocytes.

作者信息

Wilson O I, Marriott I, Mahaut-Smith M P, Hymel L J, Mason M J

机构信息

Department of Physiology, Tulane University School of Medicine, New Orleans, Louisiana 70112.

出版信息

J Membr Biol. 1994 Jan;137(2):159-68. doi: 10.1007/BF00233485.

Abstract

Membrane potential changes accompanying Ca2+ influx stimulated by release of Ca2+ from intracellular stores (store-regulated Ca2+ uptake) were monitored in BAPTA-loaded rat thymic lymphocytes using the fluorescent indicator bis(1,3-diethylthiobarbituric acid)trimethine oxonol. Depletion of [Ca2+]i stores by the application of thapsigargin, ionomycin or cyclopiazonic acid induced a depolarization which was (i) dependent upon BAPTA-loading, (ii) dependent upon extracellular Ca2+, (iii) independent of extracellular Na+ and (iv) abolished by 5 mM extracellular Ni2+. This depolarization was followed by a charybdotoxin-sensitive repolarization and subsequent hyperpolarization to values approximating the K+ equilibrium potential, consistent with secondary activation of a K+ conductance. These membrane potential changes temporally correlated with Ca2+ influx from the extracellular medium as measured fluorimetrically with indo-1. The divalent cation permeability sequence was investigated by monitoring the magnitude of the depolarization observed following the addition of 4 mM Ca2+, Mn2+, Ba2+ or Sr2+ to cells pretreated with doses of thapsigargin or ionomycin known to activate the store-regulated calcium uptake pathway. On the basis of these experiments, we conclude that the store-regulated Ca2+ uptake pathway has the following permeability sequence: Ca2+ > Mn2+ >> Ba2+, Sr2+ with Mn2+ displaying significant permeability relative to Ca2+. This pathway is distinguishable from other divalent cation uptake pathways reported in other cells types on the basis of its activation by thapsigargin and its high Mn2+ permeability.

摘要

使用荧光指示剂双(1,3 - 二乙基硫代巴比妥酸)三甲川草酚,在装载BAPTA的大鼠胸腺淋巴细胞中监测伴随细胞内钙库释放Ca²⁺(钙库调控的Ca²⁺摄取)刺激的Ca²⁺内流所引起的膜电位变化。施加毒胡萝卜素、离子霉素或环匹阿尼酸使细胞内Ca²⁺库耗竭,诱导了一种去极化,该去极化:(i)依赖于BAPTA装载;(ii)依赖于细胞外Ca²⁺;(iii)不依赖于细胞外Na⁺;(iv)被5 mM细胞外Ni²⁺消除。这种去极化之后是对蝎毒素敏感的复极化以及随后的超极化至接近K⁺平衡电位的值,这与K⁺电导的二次激活一致。这些膜电位变化在时间上与用indo - 1荧光法测量的细胞外介质中的Ca²⁺内流相关。通过监测向用已知能激活钙库调控的钙摄取途径的毒胡萝卜素或离子霉素剂量预处理的细胞中添加4 mM Ca²⁺、Mn²⁺、Ba²⁺或Sr²⁺后观察到的去极化幅度,研究了二价阳离子通透性序列。基于这些实验,我们得出结论,钙库调控的Ca²⁺摄取途径具有以下通透性序列:Ca²⁺>Mn²⁺>>Ba²⁺、Sr²⁺,其中Mn²⁺相对于Ca²⁺显示出显著的通透性。该途径基于其被毒胡萝卜素激活及其高Mn²⁺通透性,与其他细胞类型中报道的其他二价阳离子摄取途径不同。

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