Integrated mutational landscape analysis of uterine leiomyosarcomas

  • Choi, J.; 
  • Manzano, A.; 
  • Dong, W.; 
  • Bellone, S.; 
  • Bonazzoli, E.; 
  • 외 39명
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초록

Uterine leiomyosarcomas (uLMS) are aggressive tumors arising from the smooth muscle layer of the uterus. We analyzed 83 uLMS sample genetics, including 56 from Yale and 27 from The Cancer Genome Atlas (TCGA). Among them, a total of 55 Yale samples including two patient-derived xenografts (PDXs) and 27 TCGA samples have whole-exome sequencing (WES) data; 10 Yale and 27 TCGA samples have RNA-sequencing (RNA-Seq) data; and 11 Yale and 10 TCGA samples have whole-genome sequencing (WGS) data. We found recurrent somatic mutations in TP53, MED12, and PTEN genes. Top somatic mutated genes included TP53, ATRX, PTEN, and MEN1 genes. Somatic copy number variation (CNV) analysis identified 8 copy-number gains, including 5p15.33 (TERT), 8q24.21 (C-MYC), and 17p11.2 (MYOCD, MAP2K4) amplifications and 29 copy-number losses. Fusions involving tumor suppressors or oncogenes were deetected, with most fusions disrupting RB1, TP53, and ATRX/DAXX, and one fusion (ACTG2-ALK) being potentially targetable. WGS results demonstrated that 76% (16 of 21) of the samples harbored chromoplexy and/or chromothripsis. Clinically actionable mutational signatures of homologous-recombination DNA-repair deficiency (HRD) and microsatellite instability (MSI) were identified in 25% (12 of 48) and 2% (1 of 48) of fresh frozen uLMS, respectively. Finally, we found olaparib (PARPi; P = 0.002), GS-626510 (C-MYC/BETi; P < 0.000001 and P = 0.0005), and copanlisib (PIK3CAi; P = 0.0001) monotherapy to significantly inhibit uLMS-PDXs harboring derangements in C-MYC and PTEN/PIK3CA/AKT genes (LEY11) and/ or HRD signatures (LEY16) compared to vehicle-treated mice. These findings define the genetic landscape of uLMS and suggest that a subset of uLMS may benefit from existing PARP-, PIK3CA-, and C-MYC/BET-targeted drugs. © 2021 National Academy of Sciences. All rights reserved.

키워드

Mutational landscape; Uterine leiomyosarcomas; Whole-exome sequencing; Whole-genome sequencing; ACTG2 ALK gene; Article; ATRX gene; cohort analysis; controlled study; copy number variation; DAXX gene; DNA repair; female; fusion gene; gene; gene amplification; gene fusion; homologous recombination; human; human tissue; major clinical study; MAP2K4 gene; MED12 gene; MEN1 gene; microsatellite instability; mutational analysis; MYOCD gene; priority journal; PTEN gene; RNA sequencing; somatic mutation; TP53 gene; uterus sarcoma; whole exome sequencing; whole genome sequencing
제목
Integrated mutational landscape analysis of uterine leiomyosarcomas
저자
Choi, J.; Manzano, A.; Dong, W.; Bellone, S.; Bonazzoli, E.; Zammataro, L.; Yao, X.; Deshpande, A.; Zaidi, S.; Guglielmi, A.; Gnutti, B.; Nagarkatti, N.; Tymon-Rosario, J.R.; Harold, J.; Mauricio, D.; Zeybek, B.; Menderes, G.; Altwerger, G.; Jeong, K.; Zhao, S.; Buza, N.; Hui, P.; Ravaggi, A.; Bignotti, E.; Romani, C.; Todeschini, P.; Zanotti, L.; Odicino, F.; Pecorelli, S.; Ardighieri, L.; Bilguvar, K.; Quick, C.M.; Silasi, D.-A.; Huang, G.S.; Andikyan, V.; Clark, M.; Ratner, E.; Azodi, M.; Imielinski, M.; Schwartz, P.E.; Alexandrov, L.B.; Lifton, R.P.; Schlessinger, J.; Santin, A.D.
DOI
10.1073/pnas.2025182118
발행일
2021-04
유형
Article
저널명
Proceedings of the National Academy of Sciences of the United States of America
권
118
호
15