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EWS/FLI 介导的 3D 染色质重编程促进尤文肉瘤中改变的转录状态。

EWS/FLI mediated reprogramming of 3D chromatin promotes an altered transcriptional state in Ewing sarcoma.

机构信息

Center for Childhood Cancer and Blood Diseases, Abigail Wexner Research Institute at Nationwide Children's Hospital, Columbus, OH 43205, USA.

Molecular, Cellular, and Developmental Biology Graduate Program, The Ohio State University, Columbus, OH 43210, USA.

出版信息

Nucleic Acids Res. 2022 Sep 23;50(17):9814-9837. doi: 10.1093/nar/gkac747.

Abstract

Ewing sarcoma is a prototypical fusion transcription factor-associated pediatric cancer that expresses EWS/FLI or a highly related FET/ETS chimera. EWS/FLI dysregulates transcription to induce and maintain sarcomagenesis, but the mechanisms utilized are not fully understood. We therefore sought to define the global effects of EWS/FLI on chromatin conformation and transcription in Ewing sarcoma cells using a well-validated 'knock-down/rescue' model of EWS/FLI function in combination with next generation sequencing assays to evaluate how the chromatin landscape changes with loss, and recovery, of EWS/FLI expression. We found that EWS/FLI (and EWS/ERG) genomic localization is largely conserved across multiple patient-derived Ewing sarcoma cell lines. This EWS/FLI binding signature is associated with establishment of topologically-associated domain (TAD) boundaries, compartment activation, enhancer-promoter looping that involve both intra- and inter-TAD interactions, and gene activation. In addition, EWS/FLI co-localizes with the loop-extrusion factor cohesin to promote chromatin loops and TAD boundaries. Importantly, local chromatin features provide the basis for transcriptional heterogeneity in regulation of direct EWS/FLI target genes across different Ewing sarcoma cell lines. These data demonstrate a key role of EWS/FLI in mediating genome-wide changes in chromatin configuration and support the notion that fusion transcription factors serve as master regulators of three-dimensional reprogramming of chromatin.

摘要

尤因肉瘤是一种典型的融合转录因子相关的儿科癌症,表达 EWS/FLI 或高度相关的 FET/ETS 嵌合体。EWS/FLI 通过扰乱转录来诱导和维持肉瘤发生,但利用的机制尚不完全清楚。因此,我们试图使用经过充分验证的 EWS/FLI 功能“敲低/挽救”模型,结合下一代测序分析,来定义 EWS/FLI 对 Ewing 肉瘤细胞染色质构象和转录的全局影响,以评估 EWS/FLI 表达缺失和恢复时染色质景观如何变化。我们发现,EWS/FLI(和 EWS/ERG)基因组定位在多个患者来源的 Ewing 肉瘤细胞系中基本保守。这种 EWS/FLI 结合特征与拓扑相关结构域(TAD)边界的建立、区室激活、涉及内区和区间相互作用的增强子-启动子环化以及基因激活有关。此外,EWS/FLI 与环外挤压因子黏合素共定位,以促进染色质环和 TAD 边界。重要的是,局部染色质特征为不同 Ewing 肉瘤细胞系中直接 EWS/FLI 靶基因的转录异质性调节提供了基础。这些数据表明 EWS/FLI 在介导染色质构象的全基因组变化中起关键作用,并支持融合转录因子作为染色质三维重编程的主调控因子的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18ce/9508825/e80fd0c59cc1/gkac747figgra1.jpg

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