Horn R, Patlak J
Proc Natl Acad Sci U S A. 1980 Nov;77(11):6930-4. doi: 10.1073/pnas.77.11.6930.
The currents through single acetylcholine-activated channels were measured on membrane fragments that had been torn from rat muscle myotubes with patch pipettes. The membrane fragments were sealed into the pipette by using the "gigohm-seal" technique of Neher, which also permitted voltage clamp of the membrane via the patch electrode. Membrane patches were excited by sudden withdrawal of the electrode from the cell. Substitution of fluoride for chloride ions in the bathing solution could prevent or reverse the tendency for the membrane at the electrode tip to seal over into a closed vesicle. The single membrane layer at the electrode tip could remain functional for up to 30 min. The apparent single channel conductance was minimally affected by excision. The current-voltage relationships for the single channel currents show that the inside (i.e., cytoplasmic surface) of the membrane fragment was exposed to the bathing solution. In symmetric Na solutions the current-voltage curve was nearly linear and reversed at approximately 0 mV. In other bathing solutions from 40 to 500 mM NaF, the observed zero current potential was close to that predicted by the Nernst equation. We present evidence that internal Na interacts with the channel, causing both saturation of outward current and block of inward current. At + 100 mV the apparent dissociation constant for internal Na was 138 mM.
通过膜片吸管从大鼠肌肉肌管上撕取的膜片段来测量单个乙酰胆碱激活通道的电流。利用内尔的“千兆欧封接”技术将膜片段封入吸管中,该技术还能通过膜片电极对膜进行电压钳制。通过突然将电极从细胞中抽出,对膜片进行刺激。在浴液中用氟化物替代氯化物离子,可以防止或逆转电极尖端的膜封闭形成封闭囊泡的趋势。电极尖端的单层膜可保持功能长达30分钟。切除对表观单通道电导的影响最小。单通道电流的电流-电压关系表明,膜片段的内侧(即细胞质表面)暴露于浴液中。在对称的钠溶液中,电流-电压曲线几乎呈线性,在约0 mV处反转。在40至500 mM NaF的其他浴液中,观察到的零电流电位接近能斯特方程预测的值。我们提供的证据表明,内部的钠与通道相互作用,导致外向电流饱和和内向电流阻断。在+100 mV时,内部钠的表观解离常数为138 mM。