Hermann A, Erxleben C
J Gen Physiol. 1987 Jul;90(1):27-47. doi: 10.1085/jgp.90.1.27.
The action of charybdotoxin (ChTX), a peptide component isolated from the venom of the scorpion Leiurus quinquestriatus, was investigated on membrane currents of identified neurons from the marine mollusk, Aplysia californica. Macroscopic current recordings showed that the external application of ChTX blocks the Ca-activated K current in a dose- and voltage-dependent manner. The apparent dissociation constant is 30 nM at V = -30 mV and increases e-fold for a +50- to +70-mV change in membrane potential, which indicates that the toxin molecule is sensitive to approximately 35% of the transmembrane electric field. The toxin is bound to the receptor with a 1:1 stoichiometry and its effect is reversible after washout. The toxin also suppresses the membrane leakage conductance and a resting K conductance activated by internal Ca ions. The toxin has no significant effect on the inward Na or Ca currents, the transient K current, or the delayed rectifier K current. Records from Ca-activated K channels revealed a single channel conductance of 35 +/- 5 pS at V = 0 mV in asymmetrical K solution. The channel open probability increased with the internal Ca concentration and with membrane voltage. The K channels were blocked by submillimolar concentrations of tetraethylammonium ions and by nanomolar concentrations of ChTX, but were not blocked by 4-aminopyridine if applied externally on outside-out patches. From the effects of ChTX on K current and on bursting pacemaker activity, it is concluded that the termination of bursts is in part controlled by a Ca-activated K conductance.
研究了从蝎子以色列金蝎毒液中分离出的一种肽成分——查利毒素(ChTX)对海兔(Aplysia californica)特定神经元膜电流的作用。宏观电流记录表明,外部施加ChTX以剂量和电压依赖性方式阻断钙激活钾电流。在V = -30 mV时,表观解离常数为30 nM,膜电位从 +50 mV 到 +70 mV变化时增加e倍,这表明毒素分子对约35%的跨膜电场敏感。毒素以1:1的化学计量比与受体结合,洗脱后其作用是可逆的。该毒素还抑制膜漏电导和由内部钙离子激活的静息钾电导。毒素对内向钠电流或钙电流、瞬时钾电流或延迟整流钾电流没有显著影响。在不对称钾溶液中,V = 0 mV时,钙激活钾通道的记录显示单通道电导为35 +/- 5 pS。通道开放概率随内部钙浓度和膜电压增加。钾通道被亚毫摩尔浓度的四乙铵离子和纳摩尔浓度的ChTX阻断,但如果在外面向外膜片上外部施加,不被4-氨基吡啶阻断。从ChTX对钾电流和爆发性起搏活动的影响得出结论,爆发的终止部分受钙激活钾电导控制。