A slowly inactivating potassium current in native oocytes of Xenopus laevis.

I Parker, I Ivorra
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引用次数: 26

Abstract

Membrane currents were recorded in voltage-clamped oocytes of Xenopus laevis in response to voltage steps. We describe results obtained in oocytes obtained from one donor frog, which showed an unusually large outward current upon depolarization. Measurements of reversal potentials of tail currents in solutions of different K+ concentration indicated that this current is carried largely by K+ ions. It was strongly reduced by extracellular application of tetraethylammonium, though not by Ba2+ or 4-aminopyridine. Removal of surrounding follicular cells did not reduce the K+ current, indicating that it arises across the oocyte membrane proper. Activation of the K+ conductance was first detected with depolarization to about -12 mV, increased with a limiting voltage sensitivity of 3 mV for an e-fold change in current, and was half-maximally activated at about +10 mV. The current rose following a single exponential timecourse after depolarization, with a time constant that shortened from about 400 ms at -10 mV to about 15 ms at +80 mV. During prolonged depolarization the current inactivated with a time constant of about 4 s, which did not alter greatly with potential. The K+ current was independent of Ca2+, as it was not altered by addition of 10 mM Mn2+ to the bathing medium, or by intracellular injection of EGTA. Noise analysis of K+ current fluctuations indicated that the current is carried by channels with a unitary conductance of about 20 ps and a mean open lifetime of about 300 ms (at room temperature and potential of +10 to +20 mV).

非洲爪蟾原生卵母细胞中缓慢失活的钾电流。
记录了电压夹持下非洲爪蟾卵母细胞对电压变化的响应。我们描述了从一只供体青蛙获得的卵母细胞的结果,在去极化时显示出异常大的外向电流。尾电流在不同K+浓度溶液中的反转电位测量表明,尾电流主要由K+离子携带。细胞外施用四乙基铵可使其强烈还原,而Ba2+或4-氨基吡啶则不能。去除周围的卵泡细胞并没有降低K+电流,这表明K+电流是通过卵母细胞膜产生的。K+电导的激活首先在去极化到大约-12 mV时被检测到,当电流变化e倍时,极限电压灵敏度增加到3 mV,并且在大约+10 mV时被激活一半。去极化后电流呈单指数时间上升,时间常数从-10 mV时的约400 ms缩短至+80 mV时的约15 ms。在长时间去极化过程中,电流灭活的时间常数约为4 s,随电位变化不大。K+电流与Ca2+无关,因为在洗浴培养基中加入10 mM Mn2+或细胞内注射EGTA不会改变K+电流。K+电流波动的噪声分析表明,电流由统一电导约为20 ps的通道携带,平均打开寿命约为300 ms(室温下,电势为+10至+20 mV)。
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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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