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乌贼巨大突触突触前纤维递质释放与膜特性的相关性

Correlation of transmitter release with membrane properties of the presynaptic fiber of the squid giant synapse.

作者信息

Kusano K, Livengood D R, Werman R

出版信息

J Gen Physiol. 1967 Dec;50(11):2579-601. doi: 10.1085/jgp.50.11.2579.

Abstract

Depolarization of the presynaptic terminal by current produced a postsynaptic potential (PSP) which increased with increasing presynaptic polarization and then reached a plateau. Iontophoretic injection of tetraethylammonium ions (TEA) into the presynaptic axon near the terminal produced a prolonged presynaptic spike. The resulting PSP is increased in size and its time course closely followed that of the presynaptic spike. The presynaptic fiber no longer exhibited rectification and strong depolarizations revealed that the PSP reached a maximum with about 110 mv depolarization. Further depolarization produced a decrease in PSP amplitude and finally transmission was blocked. However, a PSP then always appeared on withdrawal of the depolarizing current. Under the conditions of these experiments, the PSP could be considered a direct measure of transmitter release. Bathing the TEA-injected synapse with concentrations of tetrodotoxin (TTX) sufficient to block spike activity in both pre- and postsynaptic axons did not greatly modify postsynaptic electrogenesis. However, doubling TTX concentration reversibly blocked PSP. Thus the permeability changes to Na and K accompanying the spike do not appear necessary for transmitter release. Some other processes related to the level of presynaptic polarization must be involved to explain the data. The inhibition of transmitter release by strong depolarizations appears to be related to Ca action. A membrane Ca current may also be necessary for normal transmitter release.

摘要

通过电流使突触前终末去极化产生了一个突触后电位(PSP),该电位随着突触前极化程度的增加而增大,然后达到一个平台期。向突触前轴突终末附近进行离子电泳注射四乙铵离子(TEA),可产生一个延长的突触前峰电位。由此产生的PSP大小增加,其时间进程与突触前峰电位紧密跟随。突触前纤维不再表现出整流特性,强去极化显示PSP在约110 mV去极化时达到最大值。进一步去极化导致PSP幅度减小,最终传递被阻断。然而,在撤去除极化电流时总是会出现一个PSP。在这些实验条件下,PSP可被视为递质释放的直接度量。用足以阻断突触前和突触后轴突峰电位活动的河豚毒素(TTX)浓度浸泡注射了TEA的突触,对突触后电活动没有太大改变。然而,将TTX浓度加倍可可逆地阻断PSP。因此,伴随峰电位的对Na和K的通透性变化似乎对于递质释放并非必要。必须涉及一些与突触前极化水平相关的其他过程来解释这些数据。强去极化对递质释放的抑制似乎与Ca的作用有关。正常的递质释放可能也需要一个膜Ca电流。

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