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BET蛋白在调节大鼠纹状体神经元基础转录、多巴胺诱导转录及环磷酸腺苷/蛋白激酶A依赖性转录中的作用。

A role for BET proteins in regulating basal, dopamine-induced and cAMP/PKA-dependent transcription in rat striatal neurons.

作者信息

Jones-Tabah Jace, Martin Ryan D, Chen Jennifer J, Tanny Jason C, Clarke Paul B S, Hébert Terence E

机构信息

Department of Pharmacology and Therapeutics, McGill University, Montréal, Québec H3G 1Y6, Canada.

Department of Pharmacology and Therapeutics, McGill University, Montréal, Québec H3G 1Y6, Canada.

出版信息

Cell Signal. 2022 Mar;91:110226. doi: 10.1016/j.cellsig.2021.110226. Epub 2021 Dec 31.

Abstract

The activity of striatal medium-spiny projection neurons is regulated by D1 and D2 dopamine receptors. The D1 receptor (D1R) is a Gα-coupled GPCR which activates a cAMP/PKA/DARPP-32 signalling cascade that increases excitability and facilitates plasticity, partly through the regulation of transcription. Upon activation via D1R, PKA can translocate to the nucleus to regulate transcription through the phosphorylation of various targets. One candidate effector of PKA-dependent transcriptional regulation is the BET protein Brd4. It is known that when Brd4 is activated by phosphorylation, it binds more readily to acetylated histones at promoters and enhancers; moreover, in non-neuronal cells, PKA signalling has been shown to increase recruitment of Brd4 to chromatin. However, it is unknown whether BET proteins, or Brd4 specifically, are involved in transcriptional activation by cAMP/PKA in neurons. Here, we demonstrate that in adult rats, inhibition of BET proteins with the bromodomain inhibitor JQ1 suppressed the expression of ~25% of D1R-upregulated genes, while also increasing the expression of a subset of immediate-early genes. We further found that cAMP/PKA signalling promotes Brd4 recruitment to dopamine-induced genes in striatal neurons, and that knockdown of Brd4 attenuates D1R-induced gene expression. Finally, we report that JQ1 treatment downregulated expression of many GPCRs and also impaired ERK1/2 signalling in striatal neurons. Our findings identify the BET protein family, and Brd4 in particular, as novel regulators of basal and D1R-dependent transcription in rat striatal neurons, and delineate complex bi-directional effects of bromodomain inhibitors on neuronal transcription.

摘要

纹状体中等多棘投射神经元的活动受D1和D2多巴胺受体调节。D1受体(D1R)是一种与Gα偶联的GPCR,它激活cAMP/PKA/DARPP-32信号级联反应,增加兴奋性并促进可塑性,部分是通过转录调控实现的。通过D1R激活后,PKA可转移至细胞核,通过磷酸化各种靶点来调节转录。PKA依赖性转录调控的一个候选效应物是BET蛋白Brd4。已知当Brd4通过磷酸化被激活时,它更容易与启动子和增强子处的乙酰化组蛋白结合;此外,在非神经元细胞中,PKA信号已被证明可增加Brd4与染色质的结合。然而,尚不清楚BET蛋白,特别是Brd4,是否参与神经元中cAMP/PKA介导的转录激活。在这里,我们证明在成年大鼠中,用溴结构域抑制剂JQ1抑制BET蛋白可抑制约25%的D1R上调基因的表达,同时还增加了一组即刻早期基因的表达。我们进一步发现,cAMP/PKA信号促进Brd4募集到纹状体神经元中多巴胺诱导的基因上,并且敲低Brd4可减弱D1R诱导的基因表达。最后,我们报告JQ1处理下调了许多GPCR的表达,并且还损害了纹状体神经元中的ERK1/2信号。我们的研究结果确定了BET蛋白家族,特别是Brd4,作为大鼠纹状体神经元中基础和D1R依赖性转录的新型调节因子,并描绘了溴结构域抑制剂对神经元转录的复杂双向影响。

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