首页> 美国卫生研究院文献>The Journal of Physiology >Kinetic analysis of two types of Na+ channels in rat dorsal root ganglia.
【2h】

Kinetic analysis of two types of Na+ channels in rat dorsal root ganglia.

机译:大鼠背根神经节中两种类型的Na +通道的动力学分析。

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

1. The gating properties of two types of Na+ channels were studied in neurones isolated from rat dorsal root ganglia using the whole cell variation of the patch electrode voltage-clamp technique. 2. Two types of Na+ currents (INa) were identified on the basis of their sensitivity to tetrodotoxin (TTX). One type was insensitive to TTX (up to 0.1 mM), while the other type was blocked by 1 nM of TTX. Whereas they were both insensitive to 50 microM Cd2+, a high concentration (2 mM) of Co2+ selectively inhibited the TTX-insensitive type. 3. The activation thresholds were about -60 and -40 mV for the TTX-sensitive and the TTX-insensitive INa, respectively. Activation of the TTX-sensitive INa developed with a sigmoidal time course which was described by m3 kinetics, whereas the activation of the TTX-insensitive INa was described by a single exponential function. A deactivation process, as measured by the tail current upon repolarization, followed an exponential decay in either type of INa. 4. The rate constant of activation indicated that under comparable membrane potential conditions, the TTX-insensitive channels open 4-5 times slower than the TTX-sensitive ones upon depolarization. Likewise, the rate constant of inactivation indicated that the TTX-insensitive channels inactivate 3-7 times more slowly than the TTX-sensitive ones upon repolarization. 5. The steady-state activation curve for the TTX-insensitive INa was shifted about 20 mV in the positive direction from that for the TTX-sensitive INa. 6. The steady-state inactivation curve for the TTX-insensitive INa as obtained with a 0.5 s prepulse was shifted about 26 mV in the positive direction from that for the TTX-sensitive INa, indicating a greater availability for the TTX-insensitive INa in depolarized membrane. However, on increasing the duration of prepulse, the inactivation curve for the TTX-insensitive INa, but not for the TTX-sensitive INa, shifted in the negative direction due to an extremely slow inactivation process in the TTX-insensitive INa. Consequently, an overlap between the activation and inactivation curves which causes a steady influx of Na+ (window current) became progressively reduce. 7. The time course of INa decay was best described by a single exponential process in either the TTX-sensitive or TTX-insensitive INa, whereas the development of inactivation and the recovery from inactivation, which were measured by a conventional double-pulse protocol, followed a second order process in either channel type.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.使用贴片电极电压钳技术对整个细胞进行变异,研究了从大鼠背根神经节分离出的神经元中两种类型的Na +通道的门控特性。 2.根据其对河豚毒素(TTX)的敏感性,鉴定出两种类型的Na +电流(INa)。一种对TTX不敏感(最高0.1 mM),而另一种被1 nM TTX阻断。尽管它们都对50 microM Cd2 +不敏感,但高浓度(2 mM)的Co2 +选择性抑制了对TTX不敏感的类型。 3.对于TTX敏感和对TTX不敏感的INa,激活阈值分别约为-60和-40 mV。对TTX敏感的INa的激活以S型时间过程发展,这通过m3动力学来描述,而对TTX敏感的INa的激活则通过单个指数函数来描述。失活过程(通过重新极化时的尾电流测量)随两种类型的INa的指数衰减而变化。 4.活化速率常数表明,在可比较的膜电位条件下,T极化不敏感通道在去极化时的开放速度比TTX敏感通道慢4-5倍。同样,失活速率常数表明,重新极化后,TTX不敏感通道的失活速度比TTX敏感通道慢3-7倍。 5. TTX不敏感的INa的稳态激活曲线从TTX敏感的INa的正向移动了约20 mV。 6.用0.5 s的预脉冲获得的TTX不敏感INa的稳态灭活曲线与TTX敏感INa的稳态失活曲线相比,正向偏移了约26 mV,这表明TTX不敏感INa的稳定性更高。去极化膜。但是,在增加预脉冲的持续时间时,由于TTX不敏感INa的极慢灭活过程,TTX不敏感INa的失活曲线(而不是TTX敏感INa的失活曲线)向负方向移动。因此,引起Na +(窗口电流)稳定流入的活化曲线和失活曲线之间的重叠逐渐减小。 7.无论是对TTX敏感还是对TTX不敏感的INa,INa衰减的时间过程都可以通过一个指数过程来最好地描述,而失活的发展和失活的恢复是通过传统的双脉冲协议来衡量的,在任何一个通道类型中都遵循第二顺序的过程。(抽象截断为400字)

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号