Genomic and transcriptomic plasticity in treatment-naïve ovarian cancer

  1. Wigard P. Kloosterman3,9
  1. 1Department of Medical Oncology, University Medical Center Utrecht, 3584 CX Utrecht, The Netherlands;
  2. 2Netherlands Center for Personalized Cancer Treatment, 3584 CG Utrecht, The Netherlands;
  3. 3Department of Medical Genetics, University Medical Center Utrecht, 3584 CG Utrecht, The Netherlands;
  4. 4Life Technologies, Carlsbad, California 92008, USA;
  5. 5Department of Pathology, University Medical Center Utrecht, 3584 CG Utrecht, The Netherlands;
  6. 6Department of Reproductive Medicine and Gynaecology, Division Woman and Baby, University Medical Center Utrecht, 3584 CG Utrecht, The Netherlands;
  7. 7Hubrecht Institute, KNAW and University Medical Center Utrecht, 3584 CT Utrecht, The Netherlands

    Abstract

    Intra-tumor heterogeneity is a hallmark of many cancers and may lead to therapy resistance or interfere with personalized treatment strategies. Here, we combined topographic mapping of somatic breakpoints and transcriptional profiling to probe intra-tumor heterogeneity of treatment-naïve stage IIIC/IV epithelial ovarian cancer. We observed that most substantial differences in genomic rearrangement landscapes occurred between metastases in the omentum and peritoneum versus tumor sites in the ovaries. Several cancer genes such as NF1, CDKN2A, and FANCD2 were affected by lesion-specific breakpoints. Furthermore, the intra-tumor variability involved different mutational hallmarks including lesion-specific kataegis (local mutation shower coinciding with genomic breakpoints), rearrangement classes, and coding mutations. In one extreme case, we identified two independent TP53 mutations in ovary tumors and omentum/peritoneum metastases, respectively. Examination of gene expression dynamics revealed up-regulation of key cancer pathways including WNT, integrin, chemokine, and Hedgehog signaling in only subsets of tumor samples from the same patient. Finally, we took advantage of the multilevel tumor analysis to understand the effects of genomic breakpoints on qualitative and quantitative gene expression changes. We show that intra-tumor gene expression differences are caused by site-specific genomic alterations, including formation of in-frame fusion genes. These data highlight the plasticity of ovarian cancer genomes, which may contribute to their strong capacity to adapt to changing environmental conditions and give rise to the high rate of recurrent disease following standard treatment regimes.

    Footnotes

    • 8 These authors contributed equally to this work.

    • 9 Corresponding authors

      E-mail e.cuppen{at}hubrecht.eu

      E-mail w.kloosterman{at}umcutrecht.nl

    • [Supplemental material is available for this article.]

    • Article published online before print. Article, supplemental material, and publication date are at http://www.genome.org/cgi/doi/10.1101/gr.161026.113.

    • Received May 25, 2013.
    • Accepted October 17, 2013.

    This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genome.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 3.0 Unported), as described at http://creativecommons.org/licenses/by-nc/3.0/.

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