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首页> 外文期刊>Learning & memory >Transgenic mice expressing an inhibitory truncated form of p300 exhibit long-term memory deficits
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Transgenic mice expressing an inhibitory truncated form of p300 exhibit long-term memory deficits

机译:表达抑制性截短形式的p300的转基因小鼠表现出长期记忆缺陷

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The formation of many forms of long-term memory requires several molecular mechanisms including regulation of gene expression. The mechanisms directing transcription require not only activation of individual transcription factors but also recruitment of transcriptional coactivators. CBP and p300 are transcriptional coactivators that interact with a large number of transcription factors and regulate transcription through multiple mechanisms, including an intrinsic histone acetyltransferase (HAT) activity. HAT activity mediates acetylation of lysine residues on the amino-terminal tails of histone proteins, thereby increasing DNA accessibility for transcription factors to activate gene expression. CBP has been shown to play an important role in long-term memory formation. We have investigated whether p300 is also required for certain forms of memory. p300 shares a high degree of homology with CBP and has been shown to interact with transcription factors known to be critical for long-term memory formation. Here we demonstrate that conditional transgenic mice expressing an inhibitory truncated form of p300 (p300△1), which lacks the carboxy-terminal HAT and activation domains, have impaired long-term recognition memory and contextual fear memory. Thus, our study demonstrates that p300 is required for certain forms of memory and that the HAT and carboxy-terminal domains play a critical role.
机译:许多形式的长期记忆的形成需要几种分子机制,包括基因表达的调节。指导转录的机制不仅需要激活单个转录因子,还需要募集转录共激活因子。 CBP和p300是与大量转录因子相互作用并通过多种机制调节转录的转录共激活因子,包括固有的组蛋白乙酰转移酶(HAT)活性。 HAT活性介导组蛋白蛋白质氨基末端的赖氨酸残基的乙酰化,从而增加了转录因子激活基因表达的DNA可及性。已经证明CBP在长期记忆形成中起重要作用。我们研究了某些形式的存储器是否还需要p300。 p300与CBP具有高度的同源性,并且已证明与已知对长期记忆形成至关重要的转录因子相互作用。在这里,我们证明条件表达转基因小鼠表达抑制截断形式的p300(p300△1),缺乏羧基末端的HAT和激活域,已经损害了长期的识别记忆和上下文恐惧记忆。因此,我们的研究表明,p300是某些形式的记忆所必需的,并且HAT和羧基末端域起着至关重要的作用。

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