Colley P A, Routtenberg A
Cresap Neuroscience Laboratory, Northwestern University, Evanston, IL 60208.
Brain Res Brain Res Rev. 1993 Jan-Apr;18(1):115-22. doi: 10.1016/0165-0173(93)90009-o.
We have proposed a testable model of the physiological and biochemical events underlying LTP that offers the following novel features. (1) The focus is not on a single mechanism or synaptic site, but rather on the integration and interaction of mechanisms occurring on both sides of the synapse, (2) beta PKC plays a critical presynaptic role in LTP, while gamma PKC functions postsynaptically. (3) These stages can be ordered in a time-delimited sequence of post- then presynaptic molecular events based on the period of effectiveness of inhibitor compounds. (4) The distinction is made between the time when kinase activation occurs and the time when the potentiated response requiring this kinase activation is observed.
我们提出了一个关于长时程增强(LTP)背后生理和生化事件的可测试模型,该模型具有以下新特点。(1)重点不在于单一机制或突触位点,而是突触两侧发生的机制的整合与相互作用;(2)β蛋白激酶C(PKC)在LTP中发挥关键的突触前作用,而γ PKC在突触后起作用。(3)根据抑制剂化合物的有效作用时间,可以将这些阶段按时间限定的顺序排列,即突触后分子事件先发生,然后是突触前分子事件。(4)区分了激酶激活发生的时间和观察到需要这种激酶激活的增强反应的时间。