Allosteric activation of the SPRTN protease by ubiquitin maintains genome stability

S Sophie Dürauer H Hyun-Seo Kang C Christian Wiebeler Y Yuka Machida D Dina S. Schnapka D Denitsa Yaneva C Christian Renz M Maximilian J. Götz P Pedro Weickert A Abigail C. Major A Aldwin S. Rahmanto S Sophie M. Gutenthaler-Tietze L Lena J. Daumann P Petra Beli H Helle D. Ulrich M Michael Sattler Y Yuichi J. Machida N Nadine Schwierz J Julian Stingele

Abstract

Abstract The DNA-dependent protease SPRTN maintains genome stability by degrading toxic DNA-protein crosslinks (DPCs). To understand how SPRTN’s promiscuous protease activity is confined to cleavage of crosslinked proteins, we reconstitute the repair of DPCs including their modification with SUMO and ubiquitin chains in vitro. We discover that DPC ubiquitylation strongly activates SPRTN independently of SPRTN’s known ubiquitin-binding domains. Using protein structure prediction, MD simulations and NMR spectroscopy we reveal that ubiquitin binds to SPRTN’s protease domain, promoting an open, active conformation. Replacing key interfacial residues prevents allosteric activation of SPRTN by ubiquitin, leading to genomic instability and cell cycle defects in cells expressing truncated SPRTN variants that cause premature aging and liver cancer in Ruijs-Aalfs syndrome patients. Collectively, our results reveal a ubiquitin-dependent regulatory mechanism that ensures SPRTN activity is deployed precisely when and where it is needed.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 21, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (19)

S

Sophie Dürauer

H

Hyun-Seo Kang

C

Christian Wiebeler

Y

Yuka Machida

D

Dina S. Schnapka

D

Denitsa Yaneva

C

Christian Renz

M

Maximilian J. Götz

P

Pedro Weickert

A

Abigail C. Major

A

Aldwin S. Rahmanto

S

Sophie M. Gutenthaler-Tietze

L

Lena J. Daumann

P

Petra Beli

H

Helle D. Ulrich

M

Michael Sattler

Y

Yuichi J. Machida

N

Nadine Schwierz

J

Julian Stingele