Université de Paris and Université Paris-Saclay, Inserm, LGRM/iRCM/IBFJ-CEA, UMR Stabilité Génétique Cellules Souches et Radiations, F-92265 Fontenay-Aux-Roses, France.
Present address: Precision Oncology Genomics, Oncology Therapeutic Area, Sanofi R&D, F-94403 Vitry-Sur-Seine, France.
Cells. 2021 Jun 11;10(6):1467. doi: 10.3390/cells10061467.
Homologous recombination (HR) depends on the formation of a nucleoprotein filament of the recombinase Rad51 to scan the genome and invade the homologous sequence used as a template for DNA repair synthesis. Therefore, HR is highly accurate and crucial for genome stability. Rad51 filament formation is controlled by positive and negative factors. In the mediator protein Rad52 catalyzes Rad51 filament formation and stabilizes them, mostly by counteracting the disruptive activity of the translocase Srs2. Srs2 activity is essential to avoid the formation of toxic Rad51 filaments, as revealed by Srs2-deficient cells. We previously reported that Rad52 SUMOylation or mutations disrupting the Rad52-Rad51 interaction suppress Rad51 filament toxicity because they disengage Rad52 from Rad51 filaments and reduce their stability. Here, we found that mutations in Rad52 N-terminal domain also suppress the DNA damage sensitivity of Srs2-deficient cells. Structural studies showed that these mutations affect the Rad52 oligomeric ring structure. Overall, and analyzes of these mutants indicate that Rad52 ring structure is important for protecting Rad51 filaments from Srs2, but can increase Rad51 filament stability and toxicity in Srs2-deficient cells. This stabilization function is distinct from Rad52 mediator and annealing activities.
同源重组 (HR) 依赖于重组酶 Rad51 形成核蛋白丝来扫描基因组并入侵用作 DNA 修复合成模板的同源序列。因此,HR 高度准确,对基因组稳定性至关重要。Rad51 丝的形成受正、负因子的控制。在该过程中,中介蛋白 Rad52 催化 Rad51 丝的形成并稳定它们,主要通过抵消解旋酶 Srs2 的破坏活性。Srs2 的活性对于避免形成有毒的 Rad51 丝是必不可少的,这一点从 Srs2 缺陷细胞中得到了证实。我们之前曾报道,Rad52 的 SUMO 化或破坏 Rad52-Rad51 相互作用的突变可抑制 Rad51 丝的毒性,因为它们使 Rad52 脱离 Rad51 丝并降低其稳定性。在这里,我们发现 Rad52 N 端结构域的突变也可抑制 Srs2 缺陷细胞的 DNA 损伤敏感性。结构研究表明,这些突变影响 Rad52 寡聚环结构。总体而言,对这些突变体的分析表明,Rad52 环结构对于保护 Rad51 丝免受 Srs2 的影响很重要,但在 Srs2 缺陷细胞中可增加 Rad51 丝的稳定性和毒性。这种稳定作用不同于 Rad52 的中介和退火活性。