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通过用蛋白酶溶液进行细胞内灌注改变鱿鱼巨大轴突的双折射信号。

Alteration of birefringence signals from squid giant axons by intracellular perfusion with protease solution.

作者信息

Watanabe A, Terakawa S

出版信息

Biochim Biophys Acta. 1976 Jul 15;436(4):833-42. doi: 10.1016/0005-2736(76)90410-7.

Abstract

The optical signal, arising from a transient birefringence change associated with excitation, was recorded from a squid giant axon together with the membrane potential change, and the effect of removal of the axoplasm on the optical signal was examined. In an unperfused axon, repetitive stimulation at a frequency of about 100 Hz produced two kinds of optical response. The initial response had a brief, spike-like time course and was elicited by each stimulating pulse. The delayed response had a slow time course and the sign of decreased light intensity, and summated with repetitive stimulation. Most of the axoplasm was removed from interior of the axon by intracellular perfusion with solutions containing pronase at a concentration of 0.1 mg/ml. The delayed response could selectively be eliminated by perfusion with a pronase-containing solution for 2-8 min. The result was interpreted as showing that the delayed birefringence signal originates from axoplasm when its gel structure was transiently disturbed by an increased Ca2+ influx associated with excitation. When perfusion was further continued the duration of the action potential started increasing and often a prominent after-depolarization appeared. At this stage the initial optical response was again followed by a large slow signal with the sign of increased light intensity. This reversed delayed response was tentatively assumed to originate from the membrane with some remaining axoplasm, but its cause is still not understood.

摘要

从鱿鱼巨轴突记录到与兴奋相关的瞬态双折射变化产生的光信号以及膜电位变化,并研究了去除轴浆对光信号的影响。在未灌注的轴突中,以约100Hz的频率重复刺激产生两种光反应。初始反应具有短暂的、尖峰状的时间进程,由每个刺激脉冲引发。延迟反应具有缓慢的时间进程且光强度降低,并且随着重复刺激而累加。通过用浓度为0.1mg/ml的含链霉蛋白酶的溶液进行细胞内灌注,大部分轴浆从轴突内部被去除。通过用含链霉蛋白酶的溶液灌注2 - 8分钟,可以选择性地消除延迟反应。该结果被解释为表明延迟双折射信号在其凝胶结构因与兴奋相关的Ca2+内流增加而被短暂扰乱时起源于轴浆。当进一步持续灌注时,动作电位的持续时间开始增加,并且常常出现明显的后去极化。在这个阶段,初始光反应之后再次出现一个大的缓慢信号,其光强度增加。这种反向延迟反应初步被认为起源于带有一些残留轴浆的膜,但其原因仍不清楚。

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