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

Mammalian life depends on two distinct pathways of DNA damage tolerance.

Olimpia Alessandra Buoninfante ,
Bas Pilzecker ,
Aldo Spanjaard ,
Daniël de Groot ,
Stefan Prekovic ,
Ji-Ying Song ,
Cor Lieftink ,
Matilda Ayidah ,
Colin E J Pritchard ,
Judith Vivié ,
Kathleen E Mcgrath ,
Ivo J Huijbers ,
Sjaak Philipsen ,
Marieke von Lindern ,
Wilbert Zwart ,
Roderick L Beijersbergen ,
James Palis ,
Paul C M van den Berk ,
Heinz Jacobs

Abstract

DNA damage threatens genomic integrity and instigates stem cell failure. To bypass genotoxic lesions during replication, cells employ DNA damage tolerance (DDT), which is regulated via PCNA ubiquitination and REV1. DDT is conserved in all domains of life, yet its relevance in mammals remains unclear. Here, we show that inactivation of both PCNA-ubiquitination and REV1 results in embryonic and adult lethality, and the accumulation of DNA damage in hematopoietic stem and progenitor cells (HSPCs) that ultimately resulted in their depletion. Our results reveal the crucial relevance of DDT in the maintenance of stem cell compartments and mammalian life in unperturbed conditions.

More about this publication

Proceedings of the National Academy of Sciences of the United States of America

Volume 120
Issue nr. 4
Pages e2216055120
Publication date 24-01-2023

Full text links

Publisher website (DOI) 10.1073/pnas.2216055120
Europe PubMed Central 36669105
Pubmed 36669105

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.