Université Paris Cité, CNRS, Institut Jacques Monod, F-75013, Paris, France.
Marseille Cancer Research Center (CRCM), U1068, Institut National de la Santé et de la Recherche Médicale (INSERM), UMR7258, Centre National de la Recherche Scientifique (CNRS), Aix Marseille University, Institut Paoli-Calmettes, Equipe Labélisée Ligue, 13273, Marseille, France.
Nat Commun. 2023 Sep 20;14(1):5606. doi: 10.1038/s41467-023-41345-z.
Nuclear pore complexes (NPCs) have increasingly recognized interactions with the genome, as exemplified in yeast, where they bind transcribed or damaged chromatin. By combining genome-wide approaches with live imaging of model loci, we uncover a correlation between NPC association and the accumulation of R-loops, which are genotoxic structures formed through hybridization of nascent RNAs with their DNA templates. Manipulating hybrid formation demonstrates that R-loop accumulation per se, rather than transcription or R-loop-dependent damages, is the primary trigger for relocation to NPCs. Mechanistically, R-loop-dependent repositioning involves their recognition by the ssDNA-binding protein RPA, and SUMO-dependent interactions with NPC-associated factors. Preventing R-loop-dependent relocation leads to lethality in hybrid-accumulating conditions, while NPC tethering of a model hybrid-prone locus attenuates R-loop-dependent genetic instability. Remarkably, this relocation pathway involves molecular factors similar to those required for the association of stalled replication forks with NPCs, supporting the existence of convergent mechanisms for sensing transcriptional and genotoxic stresses.
核孔复合物(NPCs)与基因组的相互作用日益受到关注,例如在酵母中,它们与转录或受损的染色质结合。通过将全基因组方法与模型基因座的活细胞成像相结合,我们发现 NPC 与 R 环的积累之间存在相关性,R 环是通过新生 RNA 与其 DNA 模板杂交形成的具有遗传毒性的结构。操纵杂交形成实验表明,R 环的积累本身,而不是转录或 R 环依赖性损伤,是重新定位到 NPCs 的主要触发因素。从机制上讲,R 环依赖性重定位涉及到 ssDNA 结合蛋白 RPA 对其的识别,以及与 NPC 相关因子的 SUMO 依赖性相互作用。防止 R 环依赖性重定位会导致在杂交积累条件下的致死性,而模型杂交易感基因座的 NPC 固定则会减弱 R 环依赖性遗传不稳定性。值得注意的是,这种重定位途径涉及到与停滞复制叉与 NPC 结合所需的分子因素相似,支持了用于感知转录和遗传毒性应激的趋同机制的存在。