Cryo-EM structures of NHEJ assemblies with nucleosomes

C Chloe Hall P Philippe Frit A Antonia Kefala-Stavridi A Amandine Pelletier S Steven W. Hardwick H Himani Amin M Matthew K. Bilyard T Taiana Maia De Oliviera A Ammarah Tariq S Sayma Zahid D Dimitri Y. Chirgadze S Shankar Balasubramanian (Yusuf Hamied Department of Chemistry, University of Cambridge) K Katheryn Meek V Virginie Ropars J Jean-Baptiste Charbonnier M Mauro Modesti P Patrick Calsou S Sébastien Britton T Tom L. Blundell T Thomas Schalch A Amanda K. Chaplin

Abstract

Abstract DNA double-strand breaks (DSBs) are highly deleterious lesions that can trigger cell death or carcinogenesis if unrepaired or misrepaired. In mammals, most DSBs are repaired by non-homologous end joining (NHEJ), which begins when Ku70/80 binds DNA ends and recruits DNA-PKcs to form the DNA-PK holoenzyme. Although recent cryo-EM studies have resolved several NHEJ assemblies, how these factors access DSBs within nucleosomes remains unclear. Here, we present cryo-EM structures of human Ku70/80 and DNA-PK bound to nucleosomes. Ku70/80 binds the DNA end and bends it away from the nucleosome core, while the Ku70 C-terminal SAP domain makes an additional, specific DNA contact. Our DNA-PK–nucleosome structure further reveals the opening of the Ku80 vWA domain, and we show that non-hydrolysable ATP promotes synapsis by stabilising the Ku80-mediated DNA-PK dimer. These structures reveal a model for DSB recognition on nucleosomal DNA and provide insights relevant to targeting NHEJ in cancer therapy.

Article Details

Volume / Issue Vol. 17, Issue 1
Published December 24, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (21)

C

Chloe Hall

P

Philippe Frit

A

Antonia Kefala-Stavridi

A

Amandine Pelletier

S

Steven W. Hardwick

H

Himani Amin

M

Matthew K. Bilyard

T

Taiana Maia De Oliviera

A

Ammarah Tariq

S

Sayma Zahid

D

Dimitri Y. Chirgadze

S

Shankar Balasubramanian

Yusuf Hamied Department of Chemistry, University of Cambridge

K

Katheryn Meek

V

Virginie Ropars

J

Jean-Baptiste Charbonnier

M

Mauro Modesti

P

Patrick Calsou

S

Sébastien Britton

T

Tom L. Blundell

T

Thomas Schalch

A

Amanda K. Chaplin