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

Targeting of vulnerabilities of drug-tolerant persisters identified through functional genetics delays tumor relapse.

Mengnuo Chen ,
Sara Mainardi ,
Cor Lieftink ,
Arno Velds ,
Iris de Rink ,
Chen Yang ,
Hendrik J Kuiken ,
Ben Morris ,
Finn Edwards ,
Fleur Jochems ,
Olaf van Tellingen ,
Manon Boeije ,
Natalie Proost ,
Robin A Jansen ,
Shifan Qin ,
Haojie Jin ,
J C Koen van der Mijn ,
Arnout Schepers ,
Subramanian Venkatesan ,
Wenxin Qin ,
Roderick L Beijersbergen ,
Liqin Wang ,
René Bernards

Abstract

Drug-tolerant persisters (DTPs) are a rare subpopulation of cells within a tumor that can survive therapy through nongenetic adaptive mechanisms to develop relapse and repopulate the tumor following drug withdrawal. Using a cancer cell line with an engineered suicide switch to kill proliferating cells, we perform both genetic screens and compound screens to identify the inhibition of bromodomain and extraterminal domain (BET) proteins as a selective vulnerability of DTPs. BET inhibitors are especially detrimental to DTPs that have reentered the cell cycle (DTEPs) in a broad spectrum of cancer types. Mechanistically, BET inhibition induces lethal levels of ROS through the suppression of redox-regulating genes highly expressed in DTPs, including GPX2, ALDH3A1, and MGST1. In vivo BET inhibitor treatment delays tumor relapse in both melanoma and lung cancer. Our study suggests that combining standard of care therapy with BET inhibitors to eliminate residual persister cells is a promising therapeutic strategy.

More about this publication

Cell reports. Medicine

Volume 5
Issue nr. 3
Pages 101471
Publication date 19-03-2024

Full text links

Publisher website (DOI) 10.1016/j.xcrm.2024.101471
Europe PubMed Central 38508142
Pubmed 38508142

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.