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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

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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,其对于未感染和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)的打开,但被相似的长关闭中断了。在打开状态下,通道显示出快速爆发状的闭合。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,细胞附着的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,慢分量的转折频率为(fc = 0.40 +/- 0.02 Hz,n = 4 )类似于全电池电流波动。氯离子通道显示出多个电导态,并具有类似的高盛-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大约为PBr。因此,大于通过最小通道单元的电流流动的C1电流幅度似乎是由两个或多个通道单元的同时开/关事件引起的。

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