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培养的胚胎果蝇肌管中谷氨酸受体通道的离子渗透特性。

Ion permeation properties of the glutamate receptor channel in cultured embryonic Drosophila myotubes.

作者信息

Chang H, Ciani S, Kidokoro Y

机构信息

Department of Physiology, Jerry Lewis Neuromuscular Research Center, University of California at Los Angeles, CA 90024.

出版信息

J Physiol. 1994 Apr 1;476(1):1-16.

Abstract

Ion permeation properties of the glutamate receptor channel in cultured myotubes of Drosophila embryos were studied using the inside-out configuration of the patch-clamp technique. Lowering the NaCl concentration in the bath (intracellular solution), while maintaining that of the external solution constant, caused a shift of the reversal potential in the positive direction, thus indicating a higher permeability of the channel to Na+ than to Cl- (PCl/PNa < 0.04), and suggesting that the channel is cation selective. With 145 mM Na+ on both sides of the membrane, the single-channel current-voltage relation was almost linear in the voltage range between -80 and +80 mV, the conductance showing some variability in the range between 140 and 170 pS. All monovalent alkali cations tested, as well as NH4+, permeated the channel effectively. Using the Goldman-Hodgkin-Katz equation for the reversal potential, the permeability ratios with respect to Na+ were estimated to be: 1.32 for K+, 1.18 for NH4+, 1.15 for Rb+, 1.09 for Cs+, and 0.57 for Li+. Divalent cations, i.e. Mg2+ and Ca2+, in the external solution depressed not only the inward but also the outward Na+ currents, although reversal potential measurements indicated that both ions have considerably higher permeabilities than Na+ (PMg/PNa = 2.31; PCa/PNa = 9.55). The conductance-activity relation for Na+ was described by a hyperbolic curve. The maximal conductance was about 195 pS and the half-saturating activity 45 mM. This result suggests that Na+ ions bind to sites in the channel. All data were fitted by a model based on the Eyring's reaction rate theory, in which the receptor channel is a one-ion pore with three energy barriers and two internal sites.

摘要

利用膜片钳技术的内面向外模式,研究了果蝇胚胎培养肌管中谷氨酸受体通道的离子通透特性。降低浴槽(细胞内溶液)中的NaCl浓度,同时保持外部溶液浓度不变,会使反转电位向正向移动,这表明通道对Na + 的通透性高于对Cl - 的通透性(PCl/PNa < 0.04),并表明该通道具有阳离子选择性。在膜两侧均为145 mM Na + 的情况下,单通道电流 - 电压关系在 - 80至 + 80 mV的电压范围内几乎呈线性,电导在140至170 pS范围内表现出一定的变化。所有测试的单价碱金属阳离子以及NH4 + 都能有效通透该通道。使用戈德曼 - 霍奇金 - Katz方程计算反转电位,相对于Na + 的通透率估计为:K + 为1.32,NH4 + 为1.18,Rb + 为1.15,Cs + 为1.09,Li + 为

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