Sossin Wayne S
Department of Neurology and Neurosurgery, Montreal Neurological Institute, McGill University, Montreal, QC, Canada.
Front Synaptic Neurosci. 2018 Apr 11;10:5. doi: 10.3389/fnsyn.2018.00005. eCollection 2018.
Synapses are diverse in form and function. While there are strong evidential and theoretical reasons for believing that memories are stored at synapses, the concept of a specialized "memory synapse" is rarely discussed. Here, we review the evidence that memories are stored at the synapse and consider the opposing possibilities. We argue that if memories are stored in an active fashion at synapses, then these memory synapses must have distinct molecular complexes that distinguish them from other synapses. In particular, examples from sensory-motor neuron synapses and synapses on defined engram neurons in rodent models are discussed. Specific hypotheses for molecular complexes that define memory synapses are presented, including persistently active kinases, transmitter receptor complexes and trans-synaptic adhesion proteins.
突触在形态和功能上具有多样性。尽管有充分的证据和理论依据支持记忆存储于突触的观点,但专门的“记忆突触”概念却很少被讨论。在此,我们回顾记忆存储于突触的证据,并考虑相反的可能性。我们认为,如果记忆以活跃的方式存储于突触,那么这些记忆突触必定具有独特的分子复合物,使其有别于其他突触。特别讨论了来自感觉运动神经元突触以及啮齿动物模型中确定的记忆神经元上的突触的例子。提出了定义记忆突触的分子复合物的具体假说,包括持续活跃的激酶、递质受体复合物和跨突触黏附蛋白。