Meir A, Ginsburg S, Butkevich A, Kachalsky S G, Kaiserman I, Ahdut R, Demirgoren S, Rahamimoff R
Department of Physiology and the Bernard Katz Minerva Centre for Cell Biophysics, Hebrew University Hadassah Medical School, Jerusalem, Israel.
Physiol Rev. 1999 Jul;79(3):1019-88. doi: 10.1152/physrev.1999.79.3.1019.
The primary function of the presynaptic nerve terminal is to release transmitter quanta and thus activate the postsynaptic target cell. In almost every step leading to the release of transmitter quanta, there is a substantial involvement of ion channels. In this review, the multitude of ion channels in the presynaptic terminal are surveyed. There are at least 12 different major categories of ion channels representing several tens of different ion channel types; the number of different ion channel molecules at presynaptic nerve terminals is many hundreds. We describe the different ion channel molecules at the surface membrane and inside the nerve terminal in the context of their possible role in the process of transmitter release. Frequently, a number of different ion channel molecules, with the same basic function, are present at the same nerve terminal. This is especially evident in the cases of calcium channels and potassium channels. This abundance of ion channels allows for a physiological and pharmacological fine tuning of the process of transmitter release and thus of synaptic transmission.
突触前神经末梢的主要功能是释放递质量子,从而激活突触后靶细胞。在几乎每一个导致递质量子释放的步骤中,离子通道都起着重要作用。在这篇综述中,我们将对突触前末梢中的众多离子通道进行概述。突触前末梢中至少有12种不同的主要离子通道类别,代表了几十种不同的离子通道类型;突触前神经末梢中不同离子通道分子的数量多达数百种。我们将在递质释放过程中,描述表面膜和神经末梢内部不同离子通道分子可能发挥的作用。通常,在同一神经末梢中会存在许多具有相同基本功能的不同离子通道分子。这在钙通道和钾通道的情况中尤为明显。如此丰富的离子通道使得递质释放过程以及突触传递能够在生理和药理层面进行精细调节。