Martinez Moreno Margot, Karambizi David, Hwang Hyeyeon, Fregoso Kristen, Michles Madison J, Fajardo Eduardo, Fiser Andras, Tapinos Nikos
Department of Neurosurgery, Brown University, Rhode Island Hospital, Providence, RI 02903, USA.
Laboratory of Cancer Epigenetics and Plasticity, Brown University, Providence, RI 02903, USA.
Biomedicines. 2024 Nov 13;12(11):2594. doi: 10.3390/biomedicines12112594.
: Schwann cells (SCs) and their plasticity contribute to the peripheral nervous system's capacity for nerve regeneration after injury. The promoter antisense RNA (Egr2-AS) recruits chromatin remodeling complexes to inhibit transcription following peripheral nerve injury. : RNA-seq and ATAC-seq were performed on control cells, Lenti-GFP-transduced cells, and cells overexpressing Egr2-AS (Lenti-AS). Egr2 AS-RNA was cloned into the pLVX-DsRed-Express2-N1 lentiviral expression vector (Clontech, Mountain View, CA, USA), and the levels of AS-RNA expression were determined. Ezh2 and Wdr5 were immunoprecipitated from rat SCs and RT-qPCR was performed against AS-Egr2 RNA. ChIP followed by DNA purification columns was used to perform qPCR for relevant promoters. Hi-C, HiC-DC+, R, Bioconductor, and TOBIAS were used for significant and differential loop analysis, identifications of COREs and CORE-promotor loops, comparisons of TF activity at promoter sites, and identification of site-specific TF footprints. OnTAD was used to detect TADs, and Juicer was used to identify A/B compartments. : Here we show that a Neuregulin-ErbB2/3 signaling axis mediates binding of the Egr2-AS to YY1 and regulates its expression. Egr2-AS modulates the chromatin accessibility of Schwann cells and interacts with two distinct histone modification complexes. It binds to EZH2 and WDR5 and enables targeting of H3K27me3 and H3K4me3 to promoters of and respectively. Expression of the Egr2-AS results in reorganization of the global chromatin landscape and quantitative changes in the loop formation and contact frequency at domain boundaries exhibiting enrichment for AP-1 genes. In addition, the Egr2-AS induces changes in the hierarchical TADs and increases transcription factor binding scores on an inter-TAD loop between a super-enhancer regulatory hub and the promoter of . : Our results show that Neuregulin-ErbB2/3-YY1 regulates the expression of Egr2-AS, which mediates remodeling of the chromatin landscape in Schwann cells.
施万细胞(SCs)及其可塑性有助于外周神经系统在损伤后进行神经再生的能力。启动子反义RNA(Egr2-AS)募集染色质重塑复合物以抑制外周神经损伤后的转录。对对照细胞、慢病毒绿色荧光蛋白(Lenti-GFP)转导的细胞以及过表达Egr2-AS的细胞(Lenti-AS)进行RNA测序(RNA-seq)和染色质转座酶可及性测序(ATAC-seq)。将Egr2反义RNA(AS-RNA)克隆到pLVX-DsRed-Express2-N1慢病毒表达载体(美国加利福尼亚州山景城的Clontech公司)中,并测定AS-RNA的表达水平。从大鼠施万细胞中免疫沉淀Ezh2和Wdr5,并针对AS-Egr2 RNA进行逆转录定量聚合酶链反应(RT-qPCR)。采用经DNA纯化柱的染色质免疫沉淀法(ChIP)对相关启动子进行定量聚合酶链反应(qPCR)。利用Hi-C、HiC-DC+、R、生物导体(Bioconductor)和TOBIAS进行显著和差异环分析、核心元件(COREs)和核心启动子环的鉴定、启动子位点转录因子(TF)活性的比较以及位点特异性TF足迹的鉴定。利用OnTAD检测拓扑相关结构域(TADs),并利用Juicer鉴定A/B区室。在此我们表明,神经调节蛋白-表皮生长因子受体2/3(Neuregulin-ErbB2/3)信号轴介导Egr2-AS与阴阳1(YY1)的结合并调节其表达。Egr2-AS调节施万细胞的染色质可及性,并与两种不同的组蛋白修饰复合物相互作用。它与EZH2和WDR5结合,分别使组蛋白H3赖氨酸27三甲基化(H3K27me3)和组蛋白H3赖氨酸4三甲基化(H3K4me3)靶向至[具体基因1]和[具体基因2]的启动子。Egr2-AS的表达导致整体染色质格局的重组以及结构域边界处环形成和接触频率的定量变化,这些边界处显示富含激活蛋白-1(AP-1)基因。此外,Egr2-AS诱导分层TADs的变化,并增加超级增强子调控枢纽与[具体基因3]启动子之间跨TAD环上的转录因子结合分数。我们的结果表明,Neuregulin-ErbB2/3-YY1调节Egr2-AS的表达,而Egr2-AS介导施万细胞中染色质格局的重塑。