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Cervantes and Quijote protect heterochromatin from aberrant recombination and lead the way to the nuclear periphery

机译:塞万提斯和吉jo德保护异染色质免受异常重组的影响,并通往核外围

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摘要

Repairing double-strand breaks (DSBs) is particularly challenging in heterochromatin, where the abundance of repeated sequences exacerbates the risk of ectopic recombination and chromosome rearrangements. In Drosophila cells, faithful homologous recombination (HR) repair of heterochromatic DSBs relies on a specialized pathway that relocalizes repair sites to the nuclear periphery before Rad51 recruitment. Here we show that HR progression is initially blocked inside the heterochromatin domain by SUMOylation and the coordinated activity of two distinct Nse2 SUMO E3 ligases: Quijote (Qjt) and Cervantes (Cerv). In addition, the SUMO-targeted ubiquitin ligase (STUbL) Dgrn, but not its partner dRad60, is recruited to heterochromatic DSBs at early stages of repair and mediates relocalization. However, Dgrn is not required to prevent Rad51 recruitment inside the heterochromatin domain, suggesting that the block to HR progression inside the domain and relocalization to the nuclear periphery are genetically separable pathways. Further, SUMOylation defects affect relocalization without blocking heterochromatin expansion, revealing that expansion is not required for relocalization. Finally, nuclear pores and inner nuclear membrane proteins (INMPs) anchor STUbL/RENi components and repair sites to the nuclear periphery, where repair continues. Together, these studies reveal a critical role of SUMOylation and nuclear architecture in the spatial and temporal regulation of heterochromatin repair and the protection of genome integrity.
机译:在异染色质中修复双链断裂(DSB)尤其具有挑战性,异源染色质中重复序列的丰富性加剧了异位重组和染色体重排的风险。在果蝇细胞中,对异色DSB的忠实同源重组(HR)修复依赖于在Rad51募集之前将修复位点重新定位到核外围的专门途径。在这里,我们显示HR进程最初是通过SUMOylation和两个不同的Nse2 SUMO E3连接酶:Quijote(Qjt)和Cervantes(Cerv)的协同活性而在异染色质域内部被阻断的。此外,在修复的早期阶段,将靶向SUMO的泛素连接酶(STUbL)Dgrn(而非其伴侣dRad60)招募到异色DSB中,并介导重新定位。但是,不需要Dgrn来阻止Rad51在异染色质域内部募集,这表明该域内部HR进程的阻滞和重新定位到核外围是基因上可分离的途径。此外,SUMOylation缺陷会影响重新定位,而不会阻止异染色质的扩增,这表明重新定位不需要扩展。最后,核孔和内部核膜蛋白(INMP)将STUbL / RENi成分和修复位点锚定到核周边,并在核周边继续进行修复。总之,这些研究揭示了SUMOylation和核结构在异染色质修复的时空调节和基因组完整性保护中的关键作用。

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