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EWSR1/FUS::CREB 易位相关性肿瘤的全面基因组分析揭示了具有预后意义的复发性遗传改变和甲基化-转录相关性。

Comprehensive genomic profiling of EWSR1/FUS::CREB translocation-associated tumors uncovers prognostically significant recurrent genetic alterations and methylation-transcriptional correlates.

机构信息

Department of Pathology, Memorial Sloan Kettering Cancer Center, New York, NY, USA.

Department of Surgery, Memorial Sloan Kettering Cancer Center, New York, NY, USA.

出版信息

Mod Pathol. 2022 Aug;35(8):1055-1065. doi: 10.1038/s41379-022-01023-9. Epub 2022 Mar 28.

Abstract

To elucidate the mechanisms underlying the divergent clinicopathologic spectrum of EWSR1/FUS::CREB translocation-associated tumors, we performed a comprehensive genomic analysis of fusion transcript variants, recurrent genetic alterations (mutations, copy number alterations), gene expression, and methylation profiles across a large cohort of tumor types. The distribution of the EWSR1/FUS fusion partners-ATF1, CREB1, and CREM-and exon involvement was significantly different across different tumor types. Our targeted sequencing showed that secondary genetic events are associated with tumor type rather than fusion type. Of the 39 cases that underwent targeted NGS testing, 18 (46%) had secondary OncoKB mutations or copy number alterations (29 secondary genetic events in total), of which 15 (52%) were recurrent. Secondary recurrent, but mutually exclusive, TERT promoter and CDKN2A mutations were identified only in clear cell sarcoma (CCS) and associated with worse overall survival. CDKN2A/B homozygous deletions were recurrent in angiomatoid fibrous histiocytoma (AFH) and restricted to metastatic cases. mRNA upregulation of MITF, CDH19, PARVB, and PFKP was found in CCS, compared to AFH, and correlated with a hypomethylated profile. In contrast, S100A4 and XAF1 were differentially upregulated and hypomethylated in AFH but not CCS. Unsupervised clustering of methylation profiles revealed that CREB family translocation-associated tumors form neighboring but tight, distinct clusters. A sarcoma methylation classifier was able to accurately match 100% of CCS cases to the correct methylation class; however, it was suboptimal when applied to other histologies. In conclusion, our comprehensive genomic profiling of EWSR1/FUS::CREB translocation-associated tumors uncovered mostly histotype, rather than fusion-type associated correlations in transcript variants, prognostically significant secondary genetic alterations, and gene expression and methylation patterns.

摘要

为了阐明 EWSR1/FUS::CREB 易位相关性肿瘤不同临床病理谱的机制,我们对融合转录本变体、反复发生的遗传改变(突变、拷贝数改变)、基因表达和甲基化谱进行了全面的基因组分析,该分析涵盖了一个大型肿瘤类型队列。不同肿瘤类型的 EWSR1/FUS 融合伙伴-ATF1、CREB1 和 CREM-以及外显子参与的分布显著不同。我们的靶向测序表明,二次遗传事件与肿瘤类型而非融合类型相关。在接受靶向 NGS 测试的 39 例病例中,有 18 例(46%)存在二次 OncoKB 突变或拷贝数改变(总共 29 个二次遗传事件),其中 15 例(52%)为反复发生的。仅在透明细胞肉瘤(CCS)中发现了二次、反复出现但相互排斥的 TERT 启动子和 CDKN2A 突变,与总体生存不良相关。CDKN2A/B 纯合缺失在血管脂肪瘤样纤维组织细胞瘤(AFH)中反复出现,且仅限于转移性病例。与 AFH 相比,CCS 中发现 MITF、CDH19、PARVB 和 PFKP 的 mRNA 上调,并与低甲基化谱相关。相反,S100A4 和 XAF1 在 AFH 中上调和低甲基化,但在 CCS 中没有。去甲基化谱的无监督聚类表明,CREB 家族易位相关性肿瘤形成相邻但紧密的、独特的簇。肉瘤去甲基化分类器能够准确地将 100%的 CCS 病例匹配到正确的甲基化类别;然而,当应用于其他组织学类型时,效果并不理想。总之,我们对 EWSR1/FUS::CREB 易位相关性肿瘤进行的全面基因组分析揭示了大多数转录本变体、具有预后意义的二次遗传改变、基因表达和甲基化模式与组织类型相关,而不是融合类型相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e760/9329182/e6b795d89300/nihms-1775945-f0001.jpg

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