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首页> 外文期刊>Cerebral cortex >Inhibition of G9a/GLP Complex Promotes Long-Term Potentiation and Synaptic Tagging/Capture in Hippocampal CA1 Pyramidal Neurons
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Inhibition of G9a/GLP Complex Promotes Long-Term Potentiation and Synaptic Tagging/Capture in Hippocampal CA1 Pyramidal Neurons

机译:G9A / GLP复合物的抑制促进了海马CA1金字塔神经元的长期增强和突触标记/捕获

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Epigenetic regulations play an important role in regulating the learning and memory processes. G9a/G9a-like protein (GLP) lysine dimethyltransferase complex controls a prominent histone H3 lysine9 dimethylation (H3K9me2) that results in transcriptional silencing of the chromatin. Here, we report that the inhibition of G9a/GLP complex by either of the substrate competitive inhibitors UNC 0638 or BIX 01294 reinforces protein synthesis-independent long-term potentiation (early-LTP) to protein synthesis-dependent long-term potentiation (late-LTP). The reinforcement effect was observed if the inhibitors were present during the induction of early-LTP and in addition when G9a/GLP complex inhibition was carried out by priming of synapses within an interval of 30 min before or after the induction of early-LTP. Surprisingly, the reinforced LTP by G9a/GLP complex inhibition was able to associate with a weak plasticity event from nearby independent synaptic populations, resulting in synaptic tagging/capture (STC). We have identified brain-derived neurotrophic factor (BDNF) as a critical plasticity protein that maintains G9a/GLP complex inhibition-mediated LTP facilitation and its STC. Our study reveals an epigenetic mechanism for promoting plasticity and associativity by G9a/GLP complex inhibition, and it may engender a promising epigenetic target for enhancing memory in neural networks.
机译:表观遗传调控在调节学习和记忆过程中起着重要作用。G9a/G9a样蛋白(GLP)赖氨酸二甲基转移酶复合物控制显著的组蛋白H3赖氨酸9二甲基化(H3K9me2),导致染色质的转录沉默。在这里,我们报告了底物竞争抑制剂UNC 0638或BIX 01294对G9a/GLP复合物的抑制增强了蛋白质合成非依赖性长时程增强(早期LTP)到蛋白质合成依赖性长时程增强(晚期LTP)。如果在诱导早期LTP期间存在抑制剂,并且在诱导早期LTP之前或之后的30分钟内通过启动突触进行G9a/GLP复合物抑制,则可以观察到增强效应。令人惊讶的是,G9a/GLP复合物抑制增强的LTP能够与附近独立突触群体的弱可塑性事件相关联,导致突触标记/捕获(STC)。我们已经确定脑源性神经营养因子(BDNF)是维持G9a/GLP复合物抑制介导的LTP易化及其STC的关键可塑性蛋白。我们的研究揭示了一种通过G9a/GLP复合物抑制促进可塑性和结合性的表观遗传学机制,它可能成为增强神经网络记忆的表观遗传学靶点。

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