Steinacker A, Zuazaga C
Pflugers Arch. 1987 Aug;409(6):555-60. doi: 10.1007/BF00584653.
The acethylcholine receptor was chemically modified using bisulfite to add a sulfonate group to a disulfide bond on the alpha subunit, and diamide, an oxidizing agent, to form an interchain disulfide bond between beta subunits of adjacent receptors. In previous work, both reagents increased mepc decay times but produced no change in mean channel open time or conductance as measured by spectral analysis of endplate current fluctuations (Steinacker and Zuazaga 1981). In the current work, we show that, while both chemical modifications increase the decay time of the miniature endplate current, only sulfonation increases the time to peak. Sulfonation also produced an effect on voltage jump current relaxation time, which parallels the increase in miniature endplate current decay time, and an increase in the ratio of the current relaxation amplitudes. Diamide had no effect on voltage jump current relaxation amplitudes or time constants. These data are analyzed in an attempt to correlate changes in specific rate constants to changes in the macroscopic current measurements.
使用亚硫酸氢盐对乙酰胆碱受体进行化学修饰,以便在α亚基的二硫键上添加一个磺酸基团,并使用氧化剂二酰胺在相邻受体的β亚基之间形成链间二硫键。在之前的工作中,通过终板电流波动的频谱分析测量发现,这两种试剂均增加了微小终板电流(mepc)的衰减时间,但平均通道开放时间或电导率未发生变化(Steinacker和Zuazaga,1981年)。在当前的工作中,我们发现,虽然两种化学修饰均增加了微小终板电流的衰减时间,但只有磺化作用增加了达到峰值的时间。磺化作用还对电压阶跃电流松弛时间产生了影响,这与微小终板电流衰减时间的增加相似,并且电流松弛幅度的比率也有所增加。二酰胺对电压阶跃电流松弛幅度或时间常数没有影响。对这些数据进行了分析,试图将特定速率常数的变化与宏观电流测量值的变化相关联。