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骨骼肌氯离子通道ClC-1的浓度和pH依赖性

Concentration and pH dependence of skeletal muscle chloride channel ClC-1.

作者信息

Rychkov G Y, Pusch M, Astill D S, Roberts M L, Jentsch T J, Bretag A H

机构信息

Centre for Advanced Biomedical Studies, University of South Australia, Adelaide, Australia.

出版信息

J Physiol. 1996 Dec 1;497 ( Pt 2)(Pt 2):423-35. doi: 10.1113/jphysiol.1996.sp021778.

Abstract
  1. The influence of Cl- concentration and pH on gating of the skeletal muscle Cl- channel, ClC-1, has been assessed using the voltage-clamp technique and the Sf-9 insect cell and Xenopus oocyte expression systems. 2. Hyperpolarization induces deactivating inward currents comprising a steady-state component and two exponentially decaying components, of which the faster is weakly voltage dependent and the slower strongly voltage dependent. 3. Open probability (Po) and kinetics depend on external but not internal Cl- concentration. 4. A point mutation, K585E, in human ClC-1, equivalent to a previously described mutation in the Torpedo electroplaque chloride channel, ClC-0, alters the I-V relationship and kinetics, but retains external Cl- dependence. 5. When external pH is reduced, the deactivating inward currents of ClC-1 are diminished without change in time constants while the steady-state component is enhanced. 6. In contrast, reduced internal pH slows deactivating current kinetics as its most immediately obvious action and the Po curve is shifted in the hyperpolarizing direction. Addition of internal benzoate at low internal pH counteracts both these effects. 7. A current activated by hyperpolarization can be revealed at an external pH of 5.5 in ClC-1, which in some ways resembles currents due to the slow gates of ClC-0. 8. Gating appears to be controlled by a Cl(-)-binding site accessible only from the exterior and, possibly, by modification of this site by external protonation. Intracellular hydroxyl ions strongly affect gating either allosterically or by direct binding and blocking of the pore, an action mimicked by intracellular benzoate.
摘要
  1. 利用电压钳技术以及Sf-9昆虫细胞和非洲爪蟾卵母细胞表达系统,评估了氯离子浓度和pH值对骨骼肌氯离子通道ClC-1门控的影响。2. 超极化诱导去激活内向电流,该电流包括一个稳态成分和两个指数衰减成分,其中较快的成分电压依赖性较弱,较慢的成分电压依赖性较强。3. 开放概率(Po)和动力学取决于细胞外而非细胞内的氯离子浓度。4. 人类ClC-1中的一个点突变K585E,等同于先前在电鳐电板氯离子通道ClC-0中描述的一个突变,改变了电流-电压关系和动力学,但仍保留对细胞外氯离子的依赖性。5. 当细胞外pH值降低时,ClC-1的去激活内向电流减小,时间常数不变,而稳态成分增强。6. 相反,细胞内pH值降低最直接明显的作用是减缓去激活电流动力学,并且Po曲线向超极化方向移动。在低细胞内pH值时添加细胞内苯甲酸盐可抵消这两种效应。7. 在ClC-1中,细胞外pH值为5.5时可揭示由超极化激活的电流,该电流在某些方面类似于ClC-0慢门控产生的电流。8. 门控似乎由一个仅从外部可及的氯离子结合位点控制,并且可能通过外部质子化对该位点的修饰来控制。细胞内羟基离子通过变构作用或直接结合并阻塞孔道强烈影响门控,细胞内苯甲酸盐可模拟这种作用。

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