Arvanov V L, Tsai M C, Walker R J, Ayrapetian S N
Department of Biophysics, Armenian Academy of Sciences, Yerevan.
Brain Res. 1993 Jul 2;615(2):252-8. doi: 10.1016/0006-8993(93)90035-l.
The effects of lectins concanavalin A (Con A) and wheat germ agglutinin (WGA), were studied on acetylcholine (ACh) responses of physically isolated internally dialyzed Helix aspersa neurons using the concentration clamp method and on the binding of [3H]alpha-bungarotoxin to the cluster of neurons. Con A and WGA have different simple sugar specificity and produced different actions on ACh-evoked Cl conductance responses, which were antagonized by Con A (5 micrograms/ml) but were not altered by WGA. Con A depressed ACh responses when applied extracellularly while it had no effect on ACh responses of the same neuron when added to the intracellular solution, thus indicating that Con A specific glycoproteins are exposed on the surface of the neuron. The studies of the effect of Con A on the properties of the ACh binding site (receptor) have demonstrated, that (1) the onset of desensitization of ACh responses of the dialyzed neurons, determined from the decay of ACh-current from peak to plateau in the continued presence of agonist and best fitted by a double exponential function, was accelerated by Con A; (2) Con A depressed the maximal ACh induced current in a dose response relationship and altered the Hill coefficients; (3) Con A depressed the binding of [3H]alpha-bungarotoxin to the cluster of neurons. These results indicate that Con A receptors on the surface of the neuronal membrane play a regulatory role in the ACh-receptor system and suggest that binding of lectin molecules to their receptors leads to inhibition of binding of ACh to ACh-receptors and to acceleration of the kinetics of desensitization of ACh receptors. All the effects of Con A, that is, on the peak amplitude, desensitization, dose-response relationship of ACh induced current and binding of [3H]alpha-bungarotoxin, could be recovered by D-mannose, a competitive inhibitor of Con A binding to its receptor.(ABSTRACT TRUNCATED AT 250 WORDS)
采用浓度钳制法,研究了伴刀豆球蛋白A(Con A)和麦胚凝集素(WGA)对物理分离的经内部透析的皱唇螺神经元乙酰胆碱(ACh)反应的影响,以及[3H]α-银环蛇毒素与神经元簇的结合情况。Con A和WGA具有不同的单糖特异性,对ACh诱发的Cl电导反应产生不同作用,Con A(5微克/毫升)可拮抗该反应,但WGA对其无影响。细胞外施加Con A时会抑制ACh反应,而加入细胞内溶液时对同一神经元的ACh反应无影响,这表明Con A特异性糖蛋白暴露于神经元表面。对Con A对ACh结合位点(受体)特性影响的研究表明:(1)Con A加速了透析神经元ACh反应脱敏的起始过程,该过程由激动剂持续存在时ACh电流从峰值到平台期的衰减确定,且最适合用双指数函数拟合;(2)Con A以剂量反应关系抑制最大ACh诱导电流并改变希尔系数;(3)Con A抑制[3H]α-银环蛇毒素与神经元簇的结合。这些结果表明,神经元膜表面的Con A受体在ACh受体系统中起调节作用,提示凝集素分子与其受体的结合导致ACh与ACh受体结合的抑制以及ACh受体脱敏动力学的加速。Con A对ACh诱导电流的峰值幅度、脱敏、剂量反应关系以及[3H]α-银环蛇毒素结合的所有影响,均可被Con A与其受体结合的竞争性抑制剂D-甘露糖恢复。(摘要截断于250字)