search

menu

  • Research Research
    • Where science meets inspired minds

    • Back
    • Research
    • Our Science
    • Research Groups
    • Facilities & Platforms
    • Clinical research
    • Find a researcher
    • Publications
    • Knowledge Transfer
  • Careers & study Careers & study
    • Become a leader in cancer research

    • Back
    • Careers & study
    • Vacancies
    • Faculty
    • Scientific staff
    • Scientific support staff
    • Postdoctoral fellows
    • PhD Students
    • Operational staff
    • Clinical fellows
    • Life in Amsterdam
    • Student internships
  • News & Events News & Events
    • Check out our stories and events

    • Back
    • News & Events
    • News
    • Media & Press
    • Calendar
  • About us About us
    • Maximum impact for cancer patients

    • Back
    • About us
    • Our vision
    • Organization
    • Collaborations
    • Responsible Research
    • Support us
    • Visit us
    • Contact us
  • Support us
Support us
  • Home
  • Publications
  • Research
  • Publications
  • Article

A compendium of Amplification-Related Gain Of Sensitivity genes in human cancer.

Veronica Rendo ,
Michael Schubert ,
Nicholas Khuu ,
Maria F Suarez Peredo Rodriguez ,
Declan Whyte ,
Xiao Ling ,
Anouk van den Brink ,
Kaimeng Huang ,
Michelle Swift ,
Yizhou He ,
Johanna Zerbib ,
Ross Smith ,
Jonne Raaijmakers ,
Pratiti Bandopadhayay ,
Lillian M Guenther ,
Justin H Hwang ,
Amanda Iniguez ,
Susan Moody ,
Ji-Heui Seo ,
Elizabeth H Stover ,
Levi Garraway ,
William C Hahn ,
Kimberly Stegmaier ,
René H Medema ,
Dipanjan Chowdhury ,
Maria Colomé-Tatché ,
Uri Ben-David ,
Rameen Beroukhim ,
Floris Foijer

Abstract

While the effect of amplification-induced oncogene expression in cancer is known, the impact of copy-number gains on "bystander" genes is less understood. We create a comprehensive map of dosage compensation in cancer by integrating expression and copy number profiles from over 8000 tumors in The Cancer Genome Atlas and cell lines from the Cancer Cell Line Encyclopedia. Additionally, we analyze 17 cancer open reading frame screens to identify genes toxic to cancer cells when overexpressed. Combining these approaches, we propose a class of 'Amplification-Related Gain Of Sensitivity' (ARGOS) genes located in commonly amplified regions, yet expressed at lower levels than expected by their copy number, and toxic when overexpressed. We validate RBM14 as an ARGOS gene in lung and breast cancer cells, and suggest a toxicity mechanism involving altered DNA damage response and STING signaling. We additionally observe increased patient survival in a radiation-treated cancer cohort with RBM14 amplification.

More about this publication

Nature communications

Volume 16
Issue nr. 1
Pages 1077
Publication date 27-01-2025

Full text links

Publisher website (DOI) 10.1038/s41467-025-56301-2
Europe PubMed Central 39870664
Pubmed 39870664

Where science meets inspired minds

Contact

Plesmanlaan 121
1066CX Amsterdam

020 512 9111 communicatie@nki.nl

Quick links

  • Vacancies
  • News
  • Contact us
  • Media & Press

Follow us on

Disclaimer
Privacy statement
Cookies
Change cookie settings

This site uses cookies

This website uses cookies to ensure you get the best experience on our website.