Brehm P, Kidokoro Y, Moody-Corbett F
J Physiol. 1984 Dec;357:203-17. doi: 10.1113/jphysiol.1984.sp015497.
Developmental changes in acetylcholine (ACh) receptor channel function on aneural cultures of embryonic myotomal muscle cells were examined using the patch-clamp technique. At all stages of differentiation two different unitary-event amplitudes were observed, corresponding to high-gamma (single-channel conductance) (64 pS) and low-gamma (46 pS) channel types. No change in conductance occurred for either channel type during the 6-day in vitro period examined. At resting membrane potential (-85 mV) the low-gamma channel exhibited a mean open time of approximately 2 ms which, on the average, was 2-3-fold longer than that measured for the high-gamma channel. Neither the estimated mean channel open time nor the voltage dependence of the open state measured for either channel type changed during development. In recordings with low ACh concentration (0.1-0.25 microM) both high-gamma and low-gamma channel types exhibited non-stationary opening probabilities over the recording period. Usually the opening rate of both channel types decreased with time following seal formation, however, the 'drop-out' rate was faster for the low-gamma channel. A developmental increase in the proportion of high-gamma events occurred between day 1 (16%) and day 5 (56%) in culture, paralleling the time-dependent changes in the channel kinetics based on ACh-activated membrane noise. We conclude that the development of non-junctional muscle membrane is associated with increased expression of high-gamma channels and that this process is primarily responsible for the previously reported developmental alterations in macroscopic ACh receptor channel currents.
利用膜片钳技术研究了胚胎肌节肌细胞无神经培养物中乙酰胆碱(ACh)受体通道功能的发育变化。在分化的各个阶段,观察到两种不同的单位事件幅度,分别对应于高γ(单通道电导)(64 pS)和低γ(46 pS)通道类型。在所研究的6天体外培养期内,两种通道类型的电导均未发生变化。在静息膜电位(-85 mV)下,低γ通道的平均开放时间约为2 ms,平均比高γ通道测量值长2至3倍。在发育过程中,两种通道类型的估计平均通道开放时间和开放状态的电压依赖性均未改变。在低ACh浓度(0.1 - 0.25 microM)的记录中,高γ和低γ通道类型在记录期内均表现出非平稳的开放概率。通常,两种通道类型的开放速率在形成封接后随时间下降,然而,低γ通道的“失活”速率更快。培养物中高γ事件的比例在第1天(16%)至第5天(56%)之间出现发育性增加,这与基于ACh激活膜噪声的通道动力学随时间的变化平行。我们得出结论,非连接性肌膜的发育与高γ通道表达增加有关,并且这一过程主要负责先前报道的宏观ACh受体通道电流的发育性改变。