BRCA2 stabilises RAD51 and DMC1 nucleoprotein filaments through a conserved interaction mode.
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Peer-reviewed
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Abstract
BRCA2 is essential for DNA repair by homologous recombination in mitosis and meiosis. It interacts with recombinases RAD51 and DMC1 to facilitate the formation of nucleoprotein filaments on resected DNA ends that catalyse recombination-mediated repair. BRCA2's BRC repeats bind and disrupt RAD51 and DMC1 filaments, whereas its PhePP motifs bind recombinases and stabilise their nucleoprotein filaments. However, the mechanism of filament stabilisation has hitherto remained unknown. Here, we report the crystal structure of a BRCA2-DMC1 complex, revealing how core interaction sites of PhePP motifs bind to recombinases. The interaction mode is conserved for RAD51 and DMC1, which selectively bind to BRCA2's two distinct PhePP motifs via subtly divergent binding pockets. PhePP motif sequences surrounding their core interaction sites protect nucleoprotein filaments from BRC-mediated disruption. Hence, we report the structural basis of how BRCA2's PhePP motifs stabilise RAD51 and DMC1 nucleoprotein filaments for their essential roles in mitotic and meiotic recombination.
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Acknowledgements: We thank Diamond Light Source and the staff of beamlines I04 and I04-1 (proposals mx13587 and mx18598). We thank A. Baslé and J. Nicol for assistance with X-ray crystallographic data collection and DMC1 F83E analysis, respectively. J.M.D. is a Herchel Smith Fellow. O.R.D. is a Wellcome Senior Research Fellow (Grant Number 219413/Z/19/Z) and was supported by the Structural Biology core of the Wellcome Discovery Research Platform for Hidden Cell Biology (226791)
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2041-1723

