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


Authors: Dermawan, J. K.; Vanoli, F.; Herviou, L.; Sung, Y. S.; Zhang, L.; Singer, S.; Tap, W. D.; Benayed, R.; Bale, T. A.; Benhamida, J. K.; Dickson, B. C.; Antonescu, C. R.
Article Title: Comprehensive genomic profiling of EWSR1/FUS::CREB translocation-associated tumors uncovers prognostically significant recurrent genetic alterations and methylation-transcriptional correlates
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. © 2022, The Author(s), under exclusive licence to United States & Canadian Academy of Pathology.
Journal Title: Modern Pathology
Volume: 35
Issue: 8
ISSN: 0893-3952
Publisher: Nature Research  
Date Published: 2022-08-01
Start Page: 1055
End Page: 1065
Language: English
DOI: 10.1038/s41379-022-01023-9
PUBMED: 35347249
PROVIDER: scopus
PMCID: PMC9329182
DOI/URL:
Notes: Article -- Export Date: 1 August 2022 -- Source: Scopus
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MSK Authors
  1. Cristina R Antonescu
    895 Antonescu
  2. Samuel Singer
    337 Singer
  3. Fabio Vanoli
    22 Vanoli
  4. William Douglas Tap
    374 Tap
  5. Lei Zhang
    194 Zhang
  6. Yun Shao Sung
    124 Sung
  7. Rym Benayed
    188 Benayed
  8. Tejus Bale
    122 Bale