Imrichova Terezie, Hubackova Sona, Kucerova Alena, Kosla Jan, Bartek Jiri, Hodny Zdenek, Vasicova Pavla
Department of Genome Integrity, Institute of Molecular Genetics of the Czech Academy of Sciences, Prague, Czech Republic.
Present address: Institute of Biotechnology, Czech Academy of Sciences, Prague-West, Czech Republic.
Aging (Albany NY). 2019 Sep 7;11(17):7206-7235. doi: 10.18632/aging.102248.
Diverse stress insults trigger interactions of PML with nucleolus, however, the function of these PML nucleolar associations (PNAs) remains unclear. Here we show that during induction of DNA damage-induced senescence in human non-cancerous cells, PML accumulates at the nucleolar periphery simultaneously with inactivation of RNA polymerase I (RNAP I) and nucleolar segregation. Using time-lapse and high-resolution microscopy, we followed the genesis, structural transitions and destiny of PNAs to show that: 1) the dynamic structural changes of the PML-nucleolar interaction are tightly associated with inactivation and reactivation of RNAP I-mediated transcription, respectively; 2) the PML-nucleolar compartment develops sequentially under stress and, upon stress termination, it culminates in either of two fates: disappearance or persistence; 3) all PNAs stages can associate with DNA damage markers; 4) the persistent, commonly long-lasting PML multi-protein nucleolar structures (PML-NDS) associate with markers of DNA damage, indicating a role of PNAs in persistent DNA damage response characteristic for senescent cells. Given the emerging evidence implicating PML in homologous recombination-directed DNA repair, we propose that PNAs contribute to sequestration and faithful repair of the highly unstable ribosomal DNA repeats, a fundamental process to maintain a precise balance between DNA repair mechanisms, with implications for genomic integrity and aging.
多种应激损伤会引发早幼粒细胞白血病蛋白(PML)与核仁的相互作用,然而,这些PML核仁关联(PNA)的功能仍不清楚。在此,我们表明,在人类非癌细胞中诱导DNA损伤诱导的衰老过程中,PML会在核仁周边积累,同时RNA聚合酶I(RNAP I)失活和核仁分离。利用延时和高分辨率显微镜,我们追踪了PNA的产生、结构转变和命运,结果表明:1)PML-核仁相互作用的动态结构变化分别与RNAP I介导的转录失活和重新激活紧密相关;2)PML-核仁区室在应激下依次形成,应激终止时,它会以两种命运之一告终:消失或持续存在;3)所有PNA阶段都可与DNA损伤标记物相关联;4)持续存在的、通常持久的PML多蛋白核仁结构(PML-NDS)与DNA损伤标记物相关联,表明PNA在衰老细胞特有的持续DNA损伤反应中发挥作用。鉴于越来越多的证据表明PML参与同源重组导向的DNA修复,我们提出PNA有助于隔离和忠实地修复高度不稳定的核糖体DNA重复序列,这是维持DNA修复机制之间精确平衡的一个基本过程,对基因组完整性和衰老具有重要意义。