首页> 外文期刊>The Journal of general physiology >Endogenous chloride channels of insect sf9 cells. Evidence for coordinated activity of small elementary channel units.
【24h】

Endogenous chloride channels of insect sf9 cells. Evidence for coordinated activity of small elementary channel units.

机译:昆虫sf9细胞的内源性氯离子通道。小型基本渠道单位协调活动的证据。

获取原文
           

摘要

The endogenous Cl- conductance of Spodoptera frugiperda (Sf9) cells was studied 20-35 h after plating out of either uninfected cells or cells infected by a baculovirus vector carrying the cloned beta-galactosidase gene (beta-Gal cells). With the cation Tris+ in the pipette and Na+ in the bath, the reversal potential of whole-cell currents was governed by the prevailing Cl- equilibrium potential and could be fitted by the Goldman-Hodgkin-Katz equation with similar permeabilities for uninfected and beta-Gal cells. In the frequency range 0.12 f 300 Hz, the power density spectrum of whole-cell Cl- currents could be fitted by three Lorentzians. Independent of membrane potential, 50% of the total variance of whole-cell current fluctuations was accounted for by the low frequency Lorentzian (fc = 0.40 +/- 0.03 Hz, n = 6). Single-Cl- channels showed complex gating kinetics with long lasting (seconds) openings interrupted by similar long closures. In the open state, channels exhibited fast burst-like closures. Since the patches normally contained more than a single channel, it was not possible to measure open and closed dwell-time distributions for comparing single-Cl- channel activity with the kinetic features of whole-cell currents. However, the power density spectrum of Cl- currents of cell-attached and excised outside-out patches contained both high and low frequency Lorentzian components, with the corner frequency of the slow component (fc = 0.40 +/- 0.02 Hz, n = 4) similar to that of whole-cell current fluctuations. Chloride channels exhibited multiple conductance states with similar Goldman-Hodgkin-Katz-type rectification. Single-channel permeabilities covered the range from approximately 0.6.10(-14) cm5/s to approximately 6.10(-14) cm3/s, corresponding to a limiting conductance (gamma 150/150) of approximately 3.5 pS and approximately 35 pS, respectively. All states reversed near the same membrane potential, and they exhibited similar halide ion selectivity, P1 PCl approximately PBr. Accordingly, Cl- current amplitudes larger than current flow through the smallest channel unit resolved seem to result from simultaneous open/shut events of two or more channel units.
机译:在接种未感染细胞或被携带克隆的β-半乳糖苷酶基因的杆状病毒载体感染的细胞(β-Gal细胞)涂板后20-35小时,研究了Spodoptera frugiperda(Sf9)细胞的内源性Cl-传导。用移液管中的阳离子Tris +和浴中的Na +,全细胞电流的逆转电势由主要的Cl-平衡电势控制,并且可以由高通-霍奇金-卡兹方程拟合,对于未感染和β- Gal细胞。在0.12 50%的全细胞电流波动总方差由低频洛伦兹方程解释(fc = 0.40 +/- 0.03 Hz,n = 6)。单Cl-通道显示出复杂的门控动力学,具有持续时间(秒)的开口,但被类似的长闭环打断。在打开状态下,通道表现出快速的爆裂状闭合。由于贴片通常包含不止一个通道,因此无法测量开放和闭合的停留时间分布,以将单Cl通道活性与全细胞电流的动力学特征进行比较。然而,细胞附着和切除的外向贴片的Cl电流的功率密度谱包含高频和低频洛伦兹分量,慢分量的转折频率(fc = 0.40 +/- 0.02 Hz,n = 4 )类似于全电池电流波动。氯化物通道显示出多个电导态,并且具有类似的高盛-霍奇金-卡兹型整流。单通道磁导率范围从大约0.6.10(-14)cm5 / s到大约6.10(-14)cm3 / s,对应于大约3.5 pS和大约35 pS的极限电导(伽马150/150),分别。所有状态在相同的膜电位附近都反转,并且它们表现出相似的卤离子选择性,P1> PC1近似为PBr。相应地,大于两个电流通道流过的最小通道单元的电流的Cl-电流幅度似乎是由两个或多个通道单元的同时打开/关闭事件引起的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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