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首页> 外文期刊>Nature chemical biology >Dynamic O-GlcNAc modification regulates CREB-mediated gene expression and memory formation
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Dynamic O-GlcNAc modification regulates CREB-mediated gene expression and memory formation

机译:动态O-GlcNAc修饰调节CREB介导的基因表达和记忆形成

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摘要

The transcription factor cyclic AMP-response element binding protein (CREB) is a key regulator of many neuronal processes, including brain development, circadian rhythm and long-term memory. Studies of CREB have focused on its phosphorylation, although the diversity of CREB functions in the brain suggests additional forms of regulation. Here we expand on a chemoenzymatic strategy for quantifying glycosylation stoichiometries to characterize the functional roles of CREB glycosylation in neurons. We show that CREB is dynamically modified with an O-linked β-N-acetyl-D-glucosamine sugar in response to neuronal activity and that glycosylation represses CREB-dependent transcription by impairing its association with CREB-regulated transcription coactivator (CRTC; also known as transducer of regulated CREB activity). Blocking glycosylation of CREB alters cellular function and behavioral plasticity, enhancing both axonal and dendritic growth and long-term memory consolidation. Our findings demonstrate a new role for O-glycosylation in memory formation and provide a mechanistic understanding of how glycosylation contributes to critical neuronal functions. Moreover, we identify a previously unknown mechanism for the regulation of activity-dependent gene expression, neural development and memory.
机译:转录因子环状AMP反应元件结合蛋白(CREB)是许多神经元过程的关键调节剂,包括大脑发育,昼夜节律和长期记忆。尽管大脑中CREB功能的多样性提示了其他形式的调节,但CREB的研究集中在其磷酸化上。在这里,我们扩展了量化糖基化化学计量学以表征CREB糖基化在神经元中的功能作用的化学酶策略。我们显示,CREB是通过响应神经元活性的O-连接的β-N-乙酰基-D-葡糖胺糖动态修饰的,并且糖基化通过削弱其与CREB调控的转录共激活因子(CRTC;也称为已知蛋白)的结合来抑制CREB依赖性转录。作为调节CREB活性的传感器。阻断CREB的糖基化会改变细胞功能和行为可塑性,从而增强轴突和树突状细胞的生长以及长期记忆巩固。我们的发现证明了O-糖基化在记忆形成中的新作用,并提供了有关糖基化如何有助于关键神经元功能的机械理解。此外,我们确定了以前未知的机制,调节活动依赖的基因表达,神经发育和记忆。

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