Ma Emilie, Lakhal Fadma, Litsardaki Eleni, Ruault Myriam, Audin Maxime, Levrier Natacha, Navarro Emilie, Garnier Mickaël, Maloisel Laurent, Depagne Jordane, Brocas Clémentine, Thureau Aurelien, Busso Didier, Veaute Xavier, Guerois Raphaël, Taddei Angela, Ochsenbein Françoise, Coïc Eric
Université Paris Cité, Inserm, CEA, Stabilité Génétique Cellules Souches et Radiations, LRGM/iRCM/IBFJ, F-92260, Fontenay-aux-Roses, France.
Université Paris-Saclay, Inserm, CEA, Stabilité Génétique Cellules Souches et Radiations, LRGM/iRCM/IBFJ, F-92260, Fontenay-aux-Roses, France.
Nat Commun. 2025 Jul 1;16(1):5589. doi: 10.1038/s41467-025-60664-x.
Homologous recombination (HR) is essential for the repair of DNA double-strand breaks and the restart of stalled replication forks. A critical step in HR is the formation of Rad51 nucleofilaments, which perform homology search and strand invasion of a homologous DNA sequence required for repair synthesis. In the yeast Saccharomyces cerevisiae, Rad52 facilitates Rad51 nucleofilament formation by mediating Rad51 loading onto ssDNA and counteracting Rad51 filament dissociation by the DNA translocase Srs2. The molecular basis of these two Rad52 functions remains unclear. Our integrative structural analyses of the Rad51-Rad52 interaction, combining NMR, SAXS, and modeling, reveal that an 85-residue segment of Rad52, conserved in fungi, folds upon binding to a broad surface of a Rad51 monomer. Notably, it includes an FxxA motif conserved in the BRC repeats of BRCA2 and at the Rad51-Rad51 interface. This binding mode was validated through an extensive set of mutations. Using in vivo assays and a functional fluorescent GFP-Rad51 fusion protein, we demonstrated that this entire segment is critical for Rad51 filament formation. These findings highlight how Rad52 functions as an assembly chaperone by preventing Rad51 oligomerization, promoting nucleation of Rad51 nucleofilaments on ssDNA, and counteracting the effects of Srs2 on destabilizing Rad51 filaments.
同源重组(HR)对于DNA双链断裂的修复以及停滞复制叉的重新启动至关重要。HR中的一个关键步骤是Rad51核丝的形成,其进行修复合成所需的同源DNA序列的同源性搜索和链侵入。在酿酒酵母中,Rad52通过介导Rad51加载到单链DNA上并抵消DNA转位酶Srs2对Rad51丝解离的作用,促进Rad51核丝的形成。这两种Rad52功能的分子基础仍不清楚。我们结合核磁共振(NMR)、小角X射线散射(SAXS)和建模对Rad51-Rad52相互作用进行的综合结构分析表明,Rad52中一个在真菌中保守的85个残基的片段在与Rad51单体的广泛表面结合时折叠。值得注意的是,它包括一个在BRCA2的BRC重复序列以及Rad51-Rad51界面保守的FxxA基序。这种结合模式通过一系列广泛的突变得到验证。使用体内试验和功能性荧光GFP-Rad51融合蛋白,我们证明整个片段对于Rad51丝的形成至关重要。这些发现突出了Rad52如何通过防止Rad51寡聚化、促进单链DNA上Rad51核丝的成核以及抵消Srs2对Rad51丝不稳定的影响,作为组装伴侣发挥作用。