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在人小脑髓母细胞瘤细胞系TE671中表达的电压门控性钠通道。

Voltage-gated sodium channels expressed in the human cerebellar medulloblastoma cell line TE671.

作者信息

Gambale F, Montal M

机构信息

Dipartimento di Fisica, Universita di Genova, Italy.

出版信息

Brain Res Mol Brain Res. 1990 Feb;7(2):123-9. doi: 10.1016/0169-328x(90)90089-v.

DOI:10.1016/0169-328x(90)90089-v
PMID:2160039
Abstract

A characterization of the properties of voltage-gated sodium channels expressed in the human cerebellar medulloblastoma cell line TE671 is presented. Membrane currents were recorded under voltage clamp conditions using the patch clamp technique in both the whole-cell and the excised-patch configurations. Macroscopic sodium currents display a typical transient time course with a sigmoidal rise to a peak followed by an exponential decay. The rates of early activation and subsequent inactivation accelerate and approach a maximum in response to test potentials, V, of greater depolarization. The magnitude of peak sodium current increased from negligible values below V = -50 mV and reached a maximum at V = -3.6 mV +/- 2.7 mV (mean +/- S.E.M., n = 12). Sodium currents reversed at V = + 70 mV, near the predicted Nernst equilibrium potential for a Na+ selective channel. The peak sodium conductance, gpeak increased with depolarizing voltages to a maximum at V = approximately 0 mV, exhibiting half-activation voltage at V approximately equal to -36.8 mV and an e-fold change in gpeak/9.5 mV. The Hodgkin-Huxley inactivation parameter h infinity indicates that at V = -73.6 mV half of the sodium currents were inactivated. Single channel current recordings demonstrated the occurrence of discrete events: the latency for first opening was shorter as the depolarizing pulse became more positive. The single-channel current amplitude was ohmic with a slope conductance, gamma = 17.13 pS +/- 0.66 pS. Sodium channel currents were reversibly blocked by tetrodotoxin (TTX).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

本文介绍了在人小脑髓母细胞瘤细胞系TE671中表达的电压门控钠通道特性。使用膜片钳技术在全细胞和膜片切除配置下的电压钳条件下记录膜电流。宏观钠电流呈现典型的瞬态时间过程,呈S形上升至峰值,随后呈指数衰减。早期激活和随后失活的速率随着测试电位V的更大去极化而加速并接近最大值。峰值钠电流的幅度从低于V = -50 mV时的可忽略不计的值增加,并在V = -3.6 mV +/- 2.7 mV(平均值 +/- 标准误,n = 12)时达到最大值。钠电流在V = + 70 mV时反转,接近预测的Na +选择性通道的能斯特平衡电位。峰值钠电导gpeak随着去极化电压增加到V =约0 mV时的最大值,在V约等于 -36.8 mV时表现出半激活电压,gpeak/e-fold变化为9.5 mV。霍奇金-赫胥黎失活参数h无穷大表明,在V = -73.6 mV时,一半的钠电流被失活。单通道电流记录证明了离散事件的发生:随着去极化脉冲变得更正,首次开放的潜伏期更短。单通道电流幅度呈欧姆性,斜率电导γ = 17.13 pS +/- 0.66 pS。钠通道电流被河豚毒素(TTX)可逆性阻断。(摘要截断于250字)

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