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

Shieldin complex promotes DNA end-joining and counters homologous recombination in BRCA1-null cells.

Harveer Dev ,
Ting-Wei Will Chiang ,
Chloe Lescale ,
Inge de Krijger ,
Alistair G Martin ,
Domenic Pilger ,
Julia Coates ,
Matylda Sczaniecka-Clift ,
Wenming Wei ,
Matthias Ostermaier ,
Mareike Herzog ,
Jonathan Lam ,
Abigail Shea ,
Mukerrem Demir ,
Qian Wu ,
Fengtang Yang ,
Beiyuan Fu ,
Zhongwu Lai ,
Gabriel Balmus ,
Rimma Belotserkovskaya ,
Violeta Serra ,
Mark J O'Connor ,
Alejandra Bruna ,
Petra Beli ,
Luca Pellegrini ,
Carlos Caldas ,
Ludovic Deriano ,
Jacqueline J L Jacobs ,
Yaron Galanty ,
Stephen P Jackson

Abstract

BRCA1 deficiencies cause breast, ovarian, prostate and other cancers, and render tumours hypersensitive to poly(ADP-ribose) polymerase (PARP) inhibitors. To understand the resistance mechanisms, we conducted whole-genome CRISPR-Cas9 synthetic-viability/resistance screens in BRCA1-deficient breast cancer cells treated with PARP inhibitors. We identified two previously uncharacterized proteins, C20orf196 and FAM35A, whose inactivation confers strong PARP-inhibitor resistance. Mechanistically, we show that C20orf196 and FAM35A form a complex, 'Shieldin' (SHLD1/2), with FAM35A interacting with single-stranded DNA through its C-terminal oligonucleotide/oligosaccharide-binding fold region. We establish that Shieldin acts as the downstream effector of 53BP1/RIF1/MAD2L2 to promote DNA double-strand break (DSB) end-joining by restricting DSB resection and to counteract homologous recombination by antagonizing BRCA2/RAD51 loading in BRCA1-deficient cells. Notably, Shieldin inactivation further sensitizes BRCA1-deficient cells to cisplatin, suggesting how defining the SHLD1/2 status of BRCA1-deficient tumours might aid patient stratification and yield new treatment opportunities. Highlighting this potential, we document reduced SHLD1/2 expression in human breast cancers displaying intrinsic or acquired PARP-inhibitor resistance.

More about this publication

Nature cell biology

Volume 20
Issue nr. 8
Pages 954-965
Publication date 01-08-2018

Full text links

Publisher website (DOI) 10.1038/s41556-018-0140-1
Europe PubMed Central 30022119
Pubmed 30022119

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.