Giménez-Llorente Daniel, Cuadrado Ana, Andreu María José, Sanclemente-Alamán Inmaculada, Solé-Ferran Maria, Rodríguez-Corsino Miriam, Losada Ana
Chromosome Dynamics Group, Molecular Oncology Programme, Spanish National Cancer Research Centre (CNIO), Melchor Fernández Almagro 3, 28029, Madrid, Spain.
EMBO Rep. 2024 Dec;25(12):5537-5560. doi: 10.1038/s44319-024-00303-6. Epub 2024 Nov 1.
Cohesin complexes carrying STAG1 or STAG2 organize the genome into chromatin loops. STAG2 loss-of-function mutations promote metastasis in Ewing sarcoma, a pediatric cancer driven by the fusion transcription factor EWS::FLI1. We integrated transcriptomic data from patients and cellular models to identify a STAG2-dependent gene signature associated with worse prognosis. Subsequent genomic profiling and high-resolution chromatin interaction data from Capture Hi-C indicated that cohesin-STAG2 facilitates communication between EWS::FLI1-bound long GGAA repeats, presumably acting as neoenhancers, and their target promoters. Changes in CTCF-dependent chromatin contacts involving signature genes, unrelated to EWS::FLI1 binding, were also identified. STAG1 is unable to compensate for STAG2 loss and chromatin-bound cohesin is severely decreased, while levels of the processivity factor NIPBL remain unchanged, likely affecting DNA looping dynamics. These results illuminate how STAG2 loss modifies the chromatin interactome of Ewing sarcoma cells and provide a list of potential biomarkers and therapeutic targets.
携带STAG1或STAG2的黏连蛋白复合物将基因组组织成染色质环。STAG2功能丧失突变促进尤因肉瘤转移,尤因肉瘤是一种由融合转录因子EWS::FLI1驱动的儿童癌症。我们整合了来自患者和细胞模型的转录组数据,以鉴定与预后较差相关的STAG2依赖性基因特征。随后的基因组分析以及来自Capture Hi-C的高分辨率染色质相互作用数据表明,黏连蛋白-STAG2促进了EWS::FLI1结合的长GGAA重复序列(可能作为新增强子)与其靶启动子之间的通讯。还鉴定了涉及特征基因的CTCF依赖性染色质接触的变化,这些变化与EWS::FLI1结合无关。STAG1无法补偿STAG2的缺失,并且染色质结合的黏连蛋白严重减少,而持续性因子NIPBL的水平保持不变,这可能影响DNA环化动力学。这些结果阐明了STAG2缺失如何改变尤因肉瘤细胞的染色质相互作用组,并提供了潜在生物标志物和治疗靶点的清单。