Gundersen C B, Miledi R, Parker I
J Physiol. 1984 Aug;353:231-48. doi: 10.1113/jphysiol.1984.sp015333.
Poly(A+) messenger RNA was extracted from the electric lobe and medulla of Torpedo and injected into oocytes of Xenopus laevis. The synthesis and processing of proteins coded by the injected messenger RNA led to the incorporation of voltage-activated channels in the oocyte membrane. A large, well maintained outward current was recorded from injected oocytes in response to depolarization. Non-injected oocytes did not show this current. The reversal potential of the current varied according to the Nernst equation with external potassium concentration, indicating that it was largely carried by potassium ions. The maintained potassium current was not reduced by manganese (5 mM) or lanthanum ions (0.1 mM). Tetraethylammonium and aminopyridines blocked the potassium current. The block produced by 3,4-diaminopyridine was enhanced by previous activation, but diminished by strong depolarization. The amplitude of the potassium current increased over the approximate voltage range -30 to +50 mV, but reduced at more positive potentials. The decline of the current during maintained depolarization became slower as the membrane potential was made more positive, and the rate of onset of the current became faster. Estimates from noise analysis indicated that the slow potassium current passes through channels with a mean lifetime of about 14 ms and conductance of 14 pS (at -10 mV and room temperature). Injection of the messenger RNA also induced the formation of fast sodium and potassium channels activated by voltage, and channels activated by kainate.
从电鳐的电叶和延髓中提取多聚腺苷酸(Poly(A+))信使核糖核酸,并将其注射到非洲爪蟾的卵母细胞中。注射的信使核糖核酸编码的蛋白质的合成和加工导致卵母细胞膜中掺入电压激活通道。对注射的卵母细胞进行去极化刺激时,记录到一个大的、维持良好的外向电流。未注射的卵母细胞未显示出这种电流。电流的反转电位根据能斯特方程随外部钾离子浓度而变化,表明该电流主要由钾离子携带。维持的钾电流不受锰(5 mM)或镧离子(0.1 mM)的影响。四乙铵和氨基吡啶阻断钾电流。3,4-二氨基吡啶产生的阻断作用在先前激活时增强,但在强去极化时减弱。钾电流的幅度在大约-30至+50 mV的电压范围内增加,但在更正的电位下降低。在持续去极化期间,电流的下降随着膜电位更正而变得更慢,并且电流的起始速率变得更快。噪声分析估计表明,缓慢的钾电流通过平均寿命约为14毫秒、电导为14皮安(在-10 mV和室温下)的通道。信使核糖核酸的注射还诱导了电压激活的快速钠通道和钾通道以及由红藻氨酸激活的通道的形成。