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增强子组蛋白乙酰化调节神经元活动诱导基因的转录爆发动力学。

Enhancer Histone Acetylation Modulates Transcriptional Bursting Dynamics of Neuronal Activity-Inducible Genes.

机构信息

Department of Neurobiology, Duke University, Durham, NC 27710, USA.

Center for Nonlinear Studies (T-CNLS) and Theoretical Biology and Biophysics Group (T-6), Theoretical Division, Los Alamos National Laboratory, NM 87545, USA.

出版信息

Cell Rep. 2019 Jan 29;26(5):1174-1188.e5. doi: 10.1016/j.celrep.2019.01.032.

Abstract

Neuronal activity-inducible gene transcription correlates with rapid and transient increases in histone acetylation at promoters and enhancers of activity-regulated genes. Exactly how histone acetylation modulates transcription of these genes has remained unknown. We used single-cell in situ transcriptional analysis to show that Fos and Npas4 are transcribed in stochastic bursts in mouse neurons and that membrane depolarization increases mRNA expression by increasing burst frequency. We then expressed dCas9-p300 or dCas9-HDAC8 fusion proteins to mimic or block activity-induced histone acetylation locally at enhancers. Adding histone acetylation increased Fos transcription by prolonging burst duration and resulted in higher Fos protein levels and an elevation of resting membrane potential. Inhibiting histone acetylation reduced Fos transcription by reducing burst frequency and impaired experience-dependent Fos protein induction in the hippocampus in vivo. Thus, activity-inducible histone acetylation tunes the transcriptional dynamics of experience-regulated genes to affect selective changes in neuronal gene expression and cellular function.

摘要

神经元活动诱导基因转录与活动调节基因启动子和增强子处组蛋白乙酰化的快速和瞬时增加相关。组蛋白乙酰化如何调节这些基因的转录仍然未知。我们使用单细胞原位转录分析表明,在小鼠神经元中 Fos 和 Npas4 以随机爆发的方式转录,而膜去极化通过增加爆发频率增加 mRNA 表达。然后,我们表达 dCas9-p300 或 dCas9-HDAC8 融合蛋白以模拟或局部阻断增强子处的活性诱导的组蛋白乙酰化。增加组蛋白乙酰化通过延长爆发持续时间增加 Fos 转录,并导致更高的 Fos 蛋白水平和静息膜电位升高。抑制组蛋白乙酰化通过降低爆发频率减少 Fos 转录,并损害体内海马体中经验依赖性 Fos 蛋白诱导。因此,活性诱导的组蛋白乙酰化调节经验调节基因的转录动力学,以影响神经元基因表达和细胞功能的选择性变化。

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