Aneuploidy Landscape in Precursors of Ovarian Cancer

  • Yeh Wang
    1Department of Pathology, Johns Hopkins Medical Institutions, Baltimore, Maryland.
  • Christopher Douville
    2Department of Oncology, the Sidney Kimmel Cancer Center, Johns Hopkins University School of Medicine, Baltimore, Maryland.
  • Yen-Wei Chien
    1Department of Pathology, Johns Hopkins Medical Institutions, Baltimore, Maryland.
  • Brant G. Wang
    6Department of Pathology, Inova Fairfax Hospital, Falls Church, Virginia.
  • Chi-Long Chen
    9Department of Pathology, College of Medicine, Taipei Medical University, Taipei, Taiwan.
  • Andre Pinto
    10University of Miami Sylvester Comprehensive Cancer Center, Miami, Florida.
  • Saron Ann Smith
    11Cascade Pathology Services, Legacy Health System, Portland, Oregon.
  • Ronny Drapkin
    12Department of Obstetrics and Gynecology and Basser Center for BRCA, University of Pennsylvania, Philadelphia, Pennsylvania.
  • M. Herman Chui
    13Department of Pathology and Laboratory Medicine, Sloan-Kettering Cancer Center, New York, New York.
  • Tricia Numan
    1Department of Pathology, Johns Hopkins Medical Institutions, Baltimore, Maryland.
  • Russell Vang
    1Department of Pathology, Johns Hopkins Medical Institutions, Baltimore, Maryland.
  • Nickolas Papadopoulos
    1Department of Pathology, Johns Hopkins Medical Institutions, Baltimore, Maryland.
  • Tian-Li Wang
    1Department of Pathology, Johns Hopkins Medical Institutions, Baltimore, Maryland.
  • Ie-Ming Shih
    1Department of Pathology, Johns Hopkins Medical Institutions, Baltimore, Maryland.

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<jats:title>Abstract</jats:title> <jats:sec> <jats:title>Purpose:</jats:title> <jats:p>Serous tubal intraepithelial carcinoma (STIC) is now recognized as the main precursor of ovarian high-grade serous carcinoma (HGSC). Other potential tubal lesions include p53 signatures and tubal intraepithelial lesions. We aimed to investigate the extent and pattern of aneuploidy in these epithelial lesions and HGSC to define the features that characterize stages of tumor initiation and progression.</jats:p> </jats:sec> <jats:sec> <jats:title>Experimental Design:</jats:title> <jats:p>We applied RealSeqS to compare genome-wide aneuploidy patterns among the precursors, HGSC (cases, n = 85), and histologically unremarkable fallopian tube epithelium (HU-FTE; control, n = 65). On the basis of a discovery set (n = 67), we developed an aneuploidy-based algorithm, REAL-FAST (Repetitive Element AneupLoidy Sequencing Fallopian Tube Aneuploidy in STIC), to correlate the molecular data with pathology diagnoses. We validated the result in an independent validation set (n = 83) to determine its performance. We correlated the molecularly defined precursor subgroups with proliferative activity and histology.</jats:p> </jats:sec> <jats:sec> <jats:title>Results:</jats:title> <jats:p>We found that nearly all p53 signatures lost the entire Chr17, offering a “two-hit” mechanism involving both TP53 and BRCA1 in BRCA1 germline mutation carriers. Proliferatively active STICs harbor gains of 19q12 (CCNE1), 19q13.2, 8q24 (MYC), or 8q arm, whereas proliferatively dormant STICs show 22q loss. REAL-FAST classified HU-FTE and STICs into 5 clusters and identified a STIC subgroup harboring unique aneuploidy that is associated with increased proliferation and discohesive growth. On the basis of a validation set, REAL-FAST showed 95.8% sensitivity and 97.1% specificity in detecting STIC/HGSC.</jats:p> </jats:sec> <jats:sec> <jats:title>Conclusions:</jats:title> <jats:p>Morphologically similar STICs are molecularly distinct. The REAL-FAST assay identifies a potentially “aggressive” STIC subgroup harboring unique DNA aneuploidy that is associated with increased cellular proliferation and discohesive growth. REAL-FAST offers a highly reproducible adjunct technique to assist the diagnosis of STIC lesions.</jats:p> </jats:sec>

Journal

  • Clinical Cancer Research

    Clinical Cancer Research 30 (3), 600-615, 2023-12-04

    American Association for Cancer Research (AACR)

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