BRCA2 binding through a cryptic repeated motif to HSF2BP oligomers does not impact meiotic recombination

Author:

Ghouil Rania,Miron Simona,Koornneef LiekeORCID,Veerman JasperORCID,Paul Maarten W.ORCID,Le Du Marie-Hélène,Sleddens-Linkels Esther,van Rossum-Fikkert Sari E.,van Loon Yvette,Felipe-Medina Natalia,Pendas Alberto M.ORCID,Maas Alex,Essers Jeroen,Legrand PierreORCID,Baarends Willy M.ORCID,Kanaar Roland,Zinn-Justin Sophie,Zelensky Alex N.ORCID

Abstract

AbstractBRCA2 and its interactors are required for meiotic homologous recombination (HR) and fertility. Loss of HSF2BP, a BRCA2 interactor, disrupts HR during spermatogenesis. We test the model postulating that HSF2BP localizes BRCA2 to meiotic HR sites, by solving the crystal structure of the BRCA2 fragment in complex with dimeric armadillo domain (ARM) of HSF2BP and disrupting this interaction in a mouse model. This reveals a repeated 23 amino acid motif in BRCA2, each binding the same conserved surface of one ARM domain. In the complex, two BRCA2 fragments hold together two ARM dimers, through a large interface responsible for the nanomolar affinity — the strongest interaction involving BRCA2 measured so far. Deleting exon 12, encoding the first repeat, from mBrca2 disrupts BRCA2 binding to HSF2BP, but does not phenocopy HSF2BP loss. Thus, results herein suggest that the high-affinity oligomerization-inducing BRCA2-HSF2BP interaction is not required for RAD51 and DMC1 recombinase localization in meiotic HR.

Funder

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

KWF Kankerbestrijding

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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