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Role of CPEB3 protein in learning and memory: new insights from synaptic plasticity

机译:CPEB3蛋白在学习和记忆中的作用:突触可塑性的新见解

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摘要

The cytoplasmic polyadenylation element-binding (CPEB) protein family have demonstrated a crucial role for establishing synaptic plasticity and memory in model organisms. In this review, we outline evidence for CPEB3 as a crucial regulator of learning and memory, citing evidence from behavioral, electrophysiological and morphological studies. Subsequently, the regulatory role of CPEB3 is addressed in the context of the plasticity-related proteins, including AMPA and NMDA receptor subunits, actin, and the synaptic scaffolding protein PSD95. Finally, we delve into some of the more well-studied molecular mechanisms that guide the functionality of this dynamic regulator both during synaptic stimulation and in its basal state, including a variety of upstream regulators, post-translational modifications, and important structural domains that confer the unique properties of CPEB3. Collectively, this review offers a comprehensive view of the regulatory layers that allow a pathway for CPEB3’s maintenance of translational control that guides the necessary protein changes required for the establishment and maintenance of lasting synaptic plasticity and ultimately, long term learning and memory.
机译:细胞质多腺苷酸元结合(CPEB)蛋白质家族已经证明了在模型生物中建立突触塑性和记忆的关键作用。在这篇综述中,我们将CPEB3的证据概述为学习和记忆的关键监管机构,引用了行为,电生理学和形态学研究的证据。随后,在塑性相关蛋白质的背景下解决CPEB3的调节作用,包括AMPA和NMDA受体亚基,肌动蛋白和突触脚手架蛋白PSD95。最后,我们深入研究了一些更良好的分子机制,这些分子机制指导了突触刺激和基础状态下的这种动态调节器的功能,包括各种上游调节因子,翻译后修改和赋予的重要结构域CPEB3的独特属性。本综述,该综述提供了允许CPEB3维护转化控制的通路的监管层,以指导建立和维护持久突触可塑性所需的必要蛋白质变化,最终,长期学习和记忆。

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