elife-39979-v1.pdf (4.29 MB)
BRCT domains of the DNA damage checkpoint proteins TOPBP1/Rad4 display distinct specificities for phosphopeptide ligands
journal contribution
posted on 2023-06-09, 15:25 authored by Matthew Day, Mathieu Rappas, Katie Ptasinska, Dominik Boos, Antony OliverAntony Oliver, Laurence PearlLaurence PearlTOPBP1 and its fission yeast homologue Rad4, are critical players in a range of DNA replication, repair and damage signalling processes. They are composed of multiple BRCT domains, some of which bind phosphorylated motifs in other proteins. They thus act as multi-point adaptors bringing proteins together into functional combinations, dependent on post-translational modifications downstream of cell cycle and DNA damage signals. We have now structurally and/or biochemically characterised a sufficient number of high-affinity complexes for the conserved N-terminal region of TOPBP1 and Rad4 with diverse phospho-ligands, including human RAD9 and Treslin, and Schizosaccharomyces pombe Crb2 and Sld3, to define the determinants of BRCT domain specificity. We use this to identify and characterise previously unknown phosphorylationdependent TOPBP1/Rad4-binding motifs in human RHNO1 and the fission yeast homologue of MDC1, Mdb1. These results provide important insights into how multiple BRCT domains within TOPBP1/Rad4 achieve selective and combinatorial binding of their multiple partner proteins.
Funding
Structural Biology of DNA Damage Response and Repair Mechanisms and its Exploitation for Drug Discov; G0891; CANCER RESEARCH UK
Structural Biology of DNA Damage Response and Repair Mechanisms; G2176; CANCER RESEARCH UK; C302/A24386
History
Publication status
- Published
File Version
- Published version
Journal
eLifeISSN
2050-084XPublisher
eLife Sciences PublicationsExternal DOI
Issue
e39979Volume
7Page range
1-18Department affiliated with
- Sussex Centre for Genome Damage Stability Publications
Full text available
- Yes
Peer reviewed?
- Yes