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乌贼巨大突触中突触前和突触后电位之间关系的进一步研究。

Further study of the relationship between pre- and postsynaptic potentials in the squid giant synapse.

作者信息

Kusano K

出版信息

J Gen Physiol. 1968 Aug;52(2):326-45. doi: 10.1085/jgp.52.2.326.

Abstract

The minimal presynaptic depolarization (MPD) for producing a detectable postsynaptic potential (PSP) was lower than 25 mv in normal or tetrodotoxin (TTX)-containing seawater. The MPD was about 10 mv when a small amount of tetraethylammonium ions (TEA) was injected into the presynaptic terminal. Application of linearly increasing depolarizing current to the normal presynaptic terminal at times produced a PSP before a presynaptic spike was evoked; the rate of rise of the resulting PSP was much slower than that of a PSP triggered by the normal presynaptic spike. A brief depolarizing pulse that preceded the presynaptic spike in normal seawater or the initial transient presynaptic depolarization in TTX decreased the PSP. It increased the PSP when it was applied during the spike or initial transient depolarization. Hyperpolarizing pulses had the reverse effect. The Off-PSP was also modified by inserting pulses at an initial part of the recovery phase of the strong presynaptic depolarization. These results indicate further that increases in Na(+) and K(+) conductance during presynaptic spike activity are not a requirement for transmitter release; the rate of release of transmitter can be controlled by electrical manipulation of the presynaptic terminal; there is a superficial correspondence between the time courses of presynaptic depolarization and the resulting PSP. Thus presynaptic depolarization appears to be only the first step in the series of events constituting excitation-transmitter release coupling. It may not be a necessary step for the release mechanism.

摘要

在正常海水或含河豚毒素(TTX)的海水中,产生可检测到的突触后电位(PSP)所需的最小突触前去极化(MPD)低于25毫伏。当向突触前终末注入少量四乙铵离子(TEA)时,MPD约为10毫伏。有时向正常突触前终末施加线性增加的去极化电流,在诱发突触前峰电位之前会产生一个PSP;所产生的PSP的上升速率比由正常突触前峰电位触发的PSP慢得多。在正常海水中先于突触前峰电位的短暂去极化脉冲或在TTX中最初的短暂突触前去极化会降低PSP。当在峰电位或最初的短暂去极化期间施加时,它会增加PSP。超极化脉冲则有相反的作用。通过在强突触前去极化的恢复阶段的初始部分插入脉冲,也可以改变Off-PSP。这些结果进一步表明,突触前峰电位活动期间Na(+)和K(+)电导的增加不是递质释放的必要条件;递质的释放速率可以通过对突触前终末的电操作来控制;突触前去极化的时间进程与所产生的PSP之间存在表面上的对应关系。因此,突触前去极化似乎只是构成兴奋 - 递质释放偶联的一系列事件中的第一步。它可能不是释放机制的必要步骤。

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