Bennett M V
Department of Neuroscience, Albert Einstein College of Medicine, Bronx, NY 10461, USA.
J Neurocytol. 1997 Jun;26(6):349-66. doi: 10.1023/a:1018560803261.
Gap junctions are the morphological substrate of one class of electrical synapse. The history of the debate on electrical vs. chemical transmission is instructive. One lesson is that Occam's razor sometimes cuts too deep; the nervous system does its operations in a number of different ways and a unitarian approach can lead one astray. Electrical synapses can do many things that chemical synapses can do, and do them just as slowly. More intriguing are the modulatory actions that chemical synapses can have on electrical synapses. Voltage dependence provides an important window on structure function relations of the connexins, even where the dependence may have no physiological role. The new molecular approaches will greatly advance our knowledge of where gap junctions occur and permit experimental manipulation with high specificity.
缝隙连接是一类电突触的形态学基础。关于电传递与化学传递的争论历史颇具启发性。一个教训是,奥卡姆剃刀有时切得太深;神经系统以多种不同方式运作,单一论方法可能会使人误入歧途。电突触能完成许多化学突触能完成的事情,而且速度也一样慢。更有趣的是化学突触对电突触可能产生的调节作用。电压依赖性为连接蛋白的结构功能关系提供了一个重要窗口,即使这种依赖性可能没有生理作用。新的分子方法将极大地推进我们对缝隙连接存在位置的认识,并允许进行高度特异性的实验操作。