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蛋白水解酶对鱿鱼轴突膜离子电导的影响。

Effects of proteolytic enzymes on ionic conductances of squid axon membranes.

作者信息

Sevcik C, Narahashi T

出版信息

J Membr Biol. 1975 Dec 4;24(3-4):329-39. doi: 10.1007/BF01868630.

Abstract

The effects of proteolytic enzymes on ionic conductances of squid axon membranes have been studied by means of the voltage clamp technique. When perfused internally alpha-chymotrypsin (1 mg/ml) increased and prolonged the depolarizing after-potential. Sodium inactivation was partially inhibited causing a prolonged sodium current, and peak sodium and steady-state potassium currents were suppressed. The time for sodium current to reach its peak was not affected. Leakage conductance increased later. On the other hand, carboxypeptidases A and B, both at 1mg/ml, suppressed the sodium and potassium conductance increases with little or no change in sodium inactivation. The mechanism that controls sodium inactivation appears to be associated with the structure of membrane proteins which is modified by alpha-chymotrypsin but not by carboxypeptidases and is located in a position accessible to alpha-chymotrypsin only from inside the membrane.

摘要

利用电压钳技术研究了蛋白水解酶对鱿鱼轴突膜离子电导的影响。当用α-胰凝乳蛋白酶(1毫克/毫升)进行内部灌注时,去极化后电位增强且持续时间延长。钠失活受到部分抑制,导致钠电流延长,而峰值钠电流和稳态钾电流受到抑制。钠电流达到峰值的时间未受影响。泄漏电导随后增加。另一方面,羧肽酶A和B(均为1毫克/毫升)抑制了钠电导和钾电导的增加,而钠失活几乎没有变化。控制钠失活的机制似乎与膜蛋白的结构有关,该结构被α-胰凝乳蛋白酶修饰,但未被羧肽酶修饰,且位于仅从膜内部可被α-胰凝乳蛋白酶接近的位置。

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