Properties of membrane ion conductances evoked by hormonal stimulation of guinea-pig and rabbit isolated hepatocytes.

T Capiod, D C Ogden
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引用次数: 21

Abstract

Membrane conductance changes evoked in isolated guinea-pig or rabbit hepatocytes by hormonal stimulation were studied with the whole-cell patch clamp technique. In Cl-containing solutions, noradrenaline (NA), ATP or angiotensin II (AII) evoked an increase of conductance to both K (GK) and Cl (GCl) ions. Activation of GK occurred after a delay of several seconds and was sustained in the presence of hormone. Activation of GCl was transient, lasting several seconds, and arose either at the same time or shortly after the increase in GK. Conductances showed an initial rapid rise and slow oscillatory changes during maintained hormone application. The NA-induced current reversed at -19 mV in Cl solutions, between the equilibrium potentials for chloride (ECl = 0 mV) and potassium ions (EK = -85 mV), and at -75 mV, near EK, in Cl-free solution. In both conditions whole-cell current-voltage curves were linear in the range -100 mV to +40 mV. The conductance increase produced by NA to Cl- ions was about 50 nS, that to K+ ions was 6 nS. The potassium conductance increase was abolished by the polypeptide toxin apamin (50 nM). An increase in membrane current noise was associated with NA-evoked outward K+ current and blocked by apamin. Spectral analysis gave estimates of the elementary K channel conductance of 1.7 pS. Power spectra were fitted by two Lorentzian components, with average half-power frequencies of 2 and 190 Hz. These results are discussed in relation to the single-channel properties and indicate that the open probability of K channels during the NA response is high. In Cl solutions, with apamin to block the K conductance, no increase in current noise was detected during the large Cl conductance evoked by NA. This suggests either that Cl channels are of very low unitary conductance (less than 1 pS) or that Cl transport is due to a membrane carrier. The complex time-course of hormonally evoked conductances is not due to the properties of ion conductances per se but probably to underlying changes of intracellular second-messenger concentration.

激素刺激豚鼠和兔离体肝细胞引起的膜离子电导特性。
采用全细胞膜片钳技术研究了激素刺激豚鼠和兔肝细胞膜电导的变化。在含Cl溶液中,去甲肾上腺素(NA)、ATP或血管紧张素II (AII)引起对K (GK)和Cl (GCl)离子的电导增加。GK的激活在延迟几秒钟后发生,并在激素存在的情况下持续。GCl的激活是短暂的,持续几秒钟,在GK增加的同时或不久之后出现。在持续使用激素期间,电导表现出最初的快速上升和缓慢的振荡变化。在Cl溶液中,na感应电流在-19 mV时,在氯离子(ECl = 0 mV)和钾离子(EK = -85 mV)的平衡电位之间反转,在无Cl溶液中,na感应电流在-75 mV,接近EK时反转。在这两种条件下,整个电池的电流-电压曲线在-100 mV到+40 mV的范围内呈线性。NA对Cl-离子的电导增加约50 nS,对K+离子的电导增加约6 nS。多肽类毒素(50 nM)可消除钾电导增加。膜电流噪声的增加与na诱发的向外K+电流有关,并被维生素阻断。功率谱由两个洛伦兹分量拟合,平均半功率频率为2hz和190hz。这些结果与单通道特性的关系进行了讨论,并表明在NA响应期间K通道的打开概率很高。在Cl溶液中,用维生素a阻断K电导,NA引起的大Cl电导期间没有检测到电流噪声的增加。这表明要么Cl通道具有非常低的单一电导(小于1ps),要么Cl的运输是由于膜载体。激素诱发电导的复杂时间过程不是由于离子电导本身的性质,而可能是由于细胞内第二信使浓度的潜在变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Proceedings of the Royal Society of London Series B-Containing Papers of Abiological Character
Proceedings of the Royal Society of London Series B-Containing Papers of Abiological Character 生命科学, 发育生物学与生殖生物学, 发育生物学
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