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Pan-cancer whole-genome comparison of primary and metastatic solid tumours

Author

Listed:
  • Francisco Martínez-Jiménez

    (University Medical Center Utrecht
    Vall d’Hebron Institute of Oncology (VHIO)
    Hartwig Medical Foundation)

  • Ali Movasati

    (University Medical Center Utrecht)

  • Sascha Remy Brunner

    (University Medical Center Utrecht)

  • Luan Nguyen

    (University Medical Center Utrecht
    Hartwig Medical Foundation Australia)

  • Peter Priestley

    (Hartwig Medical Foundation Australia)

  • Edwin Cuppen

    (University Medical Center Utrecht
    Hartwig Medical Foundation)

  • Arne Van Hoeck

    (University Medical Center Utrecht)

Abstract

Metastatic cancer remains an almost inevitably lethal disease1–3. A better understanding of disease progression and response to therapies therefore remains of utmost importance. Here we characterize the genomic differences between early-stage untreated primary tumours and late-stage treated metastatic tumours using a harmonized pan-cancer analysis (or reanalysis) of two unpaired primary4 and metastatic5 cohorts of 7,108 whole-genome-sequenced tumours. Metastatic tumours in general have a lower intratumour heterogeneity and a conserved karyotype, displaying only a modest increase in mutations, although frequencies of structural variants are elevated overall. Furthermore, highly variable tumour-specific contributions of mutational footprints of endogenous (for example, SBS1 and APOBEC) and exogenous mutational processes (for example, platinum treatment) are present. The majority of cancer types had either moderate genomic differences (for example, lung adenocarcinoma) or highly consistent genomic portraits (for example, ovarian serous carcinoma) when comparing early-stage and late-stage disease. Breast, prostate, thyroid and kidney renal clear cell carcinomas and pancreatic neuroendocrine tumours are clear exceptions to the rule, displaying an extensive transformation of their genomic landscape in advanced stages. Exposure to treatment further scars the tumour genome and introduces an evolutionary bottleneck that selects for known therapy-resistant drivers in approximately half of treated patients. Our data showcase the potential of pan-cancer whole-genome analysis to identify distinctive features of late-stage tumours and provide a valuable resource to further investigate the biological basis of cancer and resistance to therapies.

Suggested Citation

  • Francisco Martínez-Jiménez & Ali Movasati & Sascha Remy Brunner & Luan Nguyen & Peter Priestley & Edwin Cuppen & Arne Van Hoeck, 2023. "Pan-cancer whole-genome comparison of primary and metastatic solid tumours," Nature, Nature, vol. 618(7964), pages 333-341, June.
  • Handle: RePEc:nat:nature:v:618:y:2023:i:7964:d:10.1038_s41586-023-06054-z
    DOI: 10.1038/s41586-023-06054-z
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    Cited by:

    1. Todd P. Knutson & Bin Luo & Anna Kobilka & Jacqueline Lyman & Siyuan Guo & Sarah A. Munro & Yingming Li & Rakesh Heer & Luke Gaughan & Michael J. Morris & Himisha Beltran & Charles J. Ryan & Emmanuel , 2024. "AR alterations inform circulating tumor DNA detection in metastatic castration resistant prostate cancer patients," Nature Communications, Nature, vol. 15(1), pages 1-15, December.

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