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Making synaptic plasticity and memory last: mechanisms of translational regulation

机译:持续使突触可塑性和记忆:翻译调控机制

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Synaptic transmission in neurons is a measure of communication at synapses, the points of contact between axons and dendrites. The magnitude of synaptic transmission is a reflection of the strength of these synaptic connections, which in turn can be altered by the frequency with which the synapses are stimulated, the arrival of stimuli from other neurons in the appropriate temporal window, and by neurotrophic factors and neuromodulators. The ability of synapses to undergo lasting biochemical and morphological changes in response to these types of stimuli and neuromodulators is known as synaptic plasticity, which likely forms the cellular basis for learning and memory, although the relationship between any one form synaptic plasticity and a particular type of memory is unclear. RNA metabolism, particularly translational control at or near the synapse, is one process that controls long-lasting synaptic plasticity and, by extension, several types of memory formation and consolidation. Here, we review recent studies that reflect the importance and challenges of investigating the role of mRNA translation in synaptic plasticity and memory formation.
机译:神经元中的突触传递是突触(轴突和树突之间的接触点)进行交流的一种量度。突触传递的强度反映了这些突触连接的强度,继而可以通过刺激突触的频率,来自其他神经元的刺激到达适当的时间窗以及神经营养因子和神经调节剂。突触响应这些类型的刺激和神经调节剂而经历持久的生化和形态变化的能力被称为突触可塑性,尽管任何一种形式的突触可塑性与特定类型之间的关系,突触可塑性都可能构成学习和记忆的细胞基础。内存尚不清楚。 RNA代谢,特别是在突触处或附近的翻译控制,是一种控制持久突触可塑性并控制几种记忆形成和巩固的过程。在这里,我们审查了最近的研究,这些研究反映了调查mRNA翻译在突触可塑性和记忆形成中的作用的重要性和挑战。

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