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A small-molecule inhibitor of the BRCA2-RAD51 interaction modulates RAD51 assembly and potentiates DNA damage-induced cell death

Authors :
Gerhard Fischer
Matthias T. Ehebauer
Luca Pellegrini
Marko Hyvönen
David J. Huggins
Chiara R. Valenzano
Ashok R. Venkitaraman
Rajavel Srinivasan
Timothy Sharpe
Anthony G. Coyne
Alessandro Esposito
Duncan Scott
Tommaso Moschetti
Kalina T. Haas
Chris Abell
May Marsh
John Skidmore
Andrew R. Bayly
Grahame J. McKenzie
Lorraine Barber
Trevor Perrior
Tom L. Blundell
Nicola J. Francis-Newton
Publication Year :
2020
Publisher :
Cold Spring Harbor Laboratory, 2020.

Abstract

SUMMARYBRCA2 controls RAD51 recombinase during homologous DNA recombination (HDR) through eight evolutionarily-conserved BRC repeats, which individually engage RAD51 via the motif Phe-x-x-Ala. Using structure-guided molecular design, templated on a monomeric thermostable chimera between human RAD51 and archaeal RadA, we identify CAM833, a 529 Da orthosteric inhibitor of RAD51:BRC with a Kd of 366 nM. The quinoline of CAM833 occupies a hotspot, the Phe-binding pocket on RAD51 and the methyl of the substituted α-methylbenzyl group occupies the Ala-binding pocket. In cells, CAM833 diminishes formation of damage-induced RAD51 nuclear foci; inhibits RAD51 molecular clustering, suppressing extended RAD51 filament assembly; potentiates cytotoxicity by ionising radiation, augmenting 4N cell-cycle arrest and apoptotic cell death and works with poly-ADP ribose polymerase (PARP)1 inhibitors to suppress growth in BRCA2-wildtype cells. Thus, chemical inhibition of the protein-protein interaction between BRCA2 and RAD51 disrupts HDR and potentiates DNA damage-induced cell death, with implications for cancer therapy.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........13c1c19577aace398628cc240fb87a89
Full Text :
https://doi.org/10.1101/2020.07.15.200709