Catterall W A
J Biol Chem. 1975 Mar 10;250(5):1776-81.
Activation of the acetylcholine receptors of cultured muscle cells by carbamylcholine increases the rate of passive 22-Na+ uptake into the muscle cells up to 20-fold. The Na+ transport activity of the receptor desensitizes during exposure to carbamylcholine. The rate and extent of desensitization is reduced by lowering the assay temperature from 36 degrees to 2 degrees, allowing accurate measurements of initial rates of Na+ transport by the receptor. Activation of the receptor by carbamylcholine and acetylcholine is significantly cooperative (Hill coefficients of 1.4 to 2.0). Inhibition by D-tubocurarine is not cooperative. The carbamylcholine-induced Na+ transport activity of the receptor is inhibited 50% by 4 muM D-tubocurarine, 100 muM atropine, or 1.6 nM diiodo-alpha-bungarotoxin but is not affected by tetrodotoxin. The initial rate of Na+ transport by the receptor is temperature-independent between 2 degrees and 36 degrees. Receptor Na+ transport is saturable by Na+ at 2 degrees with an apparent Km of 150 plus and minus 20 mM. Saturation by Na+ not observed at 36 degrees at the concentrations tested. Saturation by Na+ is observed at 2 degrees both under conditions of net Na+ influx and under conditions of isotopic exchange at equilibrium. The receptor does not catalyze obligatory exchange diffusion at a detectable rate. Comparison of binding of [125-I]diiodo-alpha-bungarotoxin with rates of Na+ transport indicates a turnover number of 2 times 10-7 ions per min per receptor. These results are discussed in terms of the mechanism of Na+ transport by the receptor.
氨甲酰胆碱对培养的肌肉细胞乙酰胆碱受体的激活作用可使肌肉细胞对22-Na+的被动摄取速率提高达20倍。在暴露于氨甲酰胆碱期间,受体的Na+转运活性会发生脱敏。将测定温度从36℃降至2℃可降低脱敏的速率和程度,从而能够准确测量受体介导的Na+转运的初始速率。氨甲酰胆碱和乙酰胆碱对受体的激活具有显著的协同性(希尔系数为1.4至2.0)。筒箭毒碱的抑制作用不具有协同性。4μM筒箭毒碱、100μM阿托品或1.6nM二碘α-银环蛇毒素可使氨甲酰胆碱诱导的受体Na+转运活性抑制50%,但该活性不受河豚毒素的影响。在2℃至36℃之间,受体介导的Na+转运初始速率与温度无关。在2℃时,受体的Na+转运可被Na+饱和,表观Km为150±20mM。在36℃下,在所测试的浓度范围内未观察到Na+饱和现象。在2℃时,无论是在净Na+内流条件下还是在平衡时的同位素交换条件下,均观察到Na+饱和现象。该受体不会以可检测的速率催化强制性交换扩散。[125-I]二碘α-银环蛇毒素的结合与Na+转运速率的比较表明,每个受体每分钟的转换数为2×10-7个离子。本文根据受体介导的Na+转运机制对这些结果进行了讨论。