Activity-dependent plasticity of electrical synapses: increasing evidence for its presence and functional roles in the mammalian brain

电突触的活动依赖性可塑性:越来越多的证据表明其在哺乳动物大脑中的存在及其功能作用

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Abstract

Gap junctions mediate electrical synaptic transmission between neurons. While the actions of neurotransmitter modulators on the conductance of gap junctions have been extensively documented, increasing evidence indicates they can also be influenced by the ongoing activity of neural networks, in most cases via local interactions with nearby glutamatergic synapses. We review here early evidence for the existence of activity-dependent regulatory mechanisms as well recent examples reported in mammalian brain. The ubiquitous distribution of both neuronal connexins and the molecules involved suggest this phenomenon is widespread and represents a property of electrical transmission in general.

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