4.5 Article

Genomic alterations associated with mutational signatures, DNA damage repair and chromatin remodeling pathways in cervical carcinoma

Journal

NPJ GENOMIC MEDICINE
Volume 6, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s41525-021-00244-2

Keywords

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Funding

  1. V Foundation for Cancer Research [V2015-009, DVP2018-007]
  2. Endlichhofer Trust, NCI [U54CA118948]
  3. University of Bergen
  4. Research Council of Norway
  5. Norwegian Cancer Society

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This study identified previously unreported significantly mutated genes, amplifications, and deletions in cervical cancer, providing potential targets and prognostic markers for clinical applications. Distinctive copy number alterations related to specific mutations were observed, with unique amplifications within certain tumor types. Aberrations within DNA damage repair and chromatin remodeling genes were also detected at a high frequency.
Despite recent advances in the prevention of cervical cancer, the disease remains a leading cause of cancer-related deaths in women worldwide. By applying the GISTIC2.0 and/or the MutSig2CV algorithms on 430 whole-exome-sequenced cervical carcinomas, we identified previously unreported significantly mutated genes (SMGs) (including MSN, GPX1, SPRED3, FAS, and KRT8), amplifications (including NFIA, GNL1, TGIF1, and WDR87) and deletions (including MIR562, PVRL1, and NTM). Subset analyses of 327 squamous cell carcinomas and 86 non-squamous cell carcinomas revealed previously unreported SMGs in BAP1 and IL28A, respectively. Distinctive copy number alterations related to tumors predominantly enriched for *CpG- and Tp*C mutations were observed. CD274, GRB2, KRAS, and EGFR were uniquely significantly amplified within the Tp*C-enriched tumors. A high frequency of aberrations within DNA damage repair and chromatin remodeling genes were detected. Facilitated by the large sample size derived from combining multiple datasets, this study reveals potential targets and prognostic markers for cervical cancer.

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