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首页> 外文期刊>Nature Communications >KAT3-dependent acetylation of cell type-specific genes maintains neuronal identity in the adult mouse brain
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KAT3-dependent acetylation of cell type-specific genes maintains neuronal identity in the adult mouse brain

机译:依赖于细胞类型特异性基因的KAT3依赖性乙酰化在成人小鼠脑中保持神经元同一性

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摘要

The lysine acetyltransferases type 3 (KAT3) family members CBP and p300 are important transcriptional co-activators, but their specific functions in adult post-mitotic neurons remain unclear. Here, we show that the combined elimination of both proteins in forebrain excitatory neurons of adult mice resulted in a rapidly progressing neurological phenotype associated with severe ataxia, dendritic retraction and reduced electrical activity. At the molecular level, we observed the downregulation of neuronal genes, as well as decreased H3K27 acetylation and pro-neural transcription factor binding at the promoters and enhancers of canonical neuronal genes. The combined deletion of CBP and p300 in hippocampal neurons resulted in the rapid loss of neuronal molecular identity without de- or transdifferentiation. Restoring CBP expression or lysine acetylation rescued neuronal-specific transcription in cultured neurons. Together, these experiments show that KAT3 proteins maintain the excitatory neuron identity through the regulation of histone acetylation at cell type-specific promoter and enhancer regions.
机译:赖氨酸乙酰转移酶3型(KAT3)家族成员CBP和P300是重要的转录共同活化剂,但其在成年后神经元中的特定功能仍然尚不清楚。在这里,我们表明,成年小鼠的前脑兴奋性神经元中的两种蛋白质的组合消除导致与严重的共济失调,树突缩回和降低电活动相关的快速进展的神经表型。在分子水平,我们观察到神经元基因的下调,以及降低在促进剂和典型神经元基因的增强剂处的H3K27乙酰化和亲神经转录因子结合。在海马神经元中CBP和P300的组合缺失导致神经元分子标识的快速丧失,而无需脱节或转染。恢复CBP表达或赖氨酸乙酰化在培养的神经元中拯救了神经元特异性转录。在一起,这些实验表明,KAT3蛋白通过在细胞类型特异性启动子和增强子区域的组蛋白乙酰化的调节中维持兴奋性神经元同一性。

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