Topological stress triggers persistent DNA lesions in ribosomal DNA with ensuing formation of PML-nucleolar compartment

Author:

Urbancokova Alexandra1ORCID,Hornofova Terezie1ORCID,Novak Josef1ORCID,Salajkova Sarka Andrs1ORCID,Hubackova Sona Stemberkova1ORCID,Uvizl Alena1ORCID,Buchtova Tereza2ORCID,Mistrik Martin2ORCID,McStay Brian3ORCID,Hodny Zdenek1ORCID,Bartek Jiri145ORCID,Vasicova Pavla1ORCID

Affiliation:

1. Laboratory of Genome Integrity, Institute of Molecular Genetics of the Czech Academy of Sciences

2. Institute of Molecular and Translational Medicine, Faculty of Medicine and Dentistry, Palacky University Olomouc

3. Centre for Chromosome Biology, College of Science and Engineering, University of Galway

4. Genome Integrity Unit, Danish Cancer Society Research Center, Copenhagen

5. Division of Genome Biology, Department of medical biochemistry and biophysics, Karolinska Institutet

Abstract

PML, a multifunctional protein, is crucial for forming PML-nuclear bodies involved in stress responses. Under specific conditions, PML associates with nucleolar caps formed after RNA polymerase I (RNAPI) inhibition, leading to PML-nucleolar associations (PNAs). This study investigates these stimuli by exposing cells to various genotoxic stresses. We found that the most potent inducers of PNAs introduced topological stress and inhibited RNAPI. Doxorubicin, the most effective compound, induced double-strand breaks (DSBs) in the rDNA locus. PNAs co-localized with damaged rDNA, segregating it from active nucleoli. Cleaving the rDNA locus with I-PpoI confirmed rDNA damage as a genuine stimulus for PNAs. Inhibition of ATM, ATR kinases, and RAD51 reduced I-PpoI-induced PNAs, highlighting the importance of ATM/ATR-dependent nucleolar cap formation and homologous recombination (HR) in their triggering. I-PpoI-induced PNAs co-localized with rDNA DSBs positive for RPA32-pS33 but deficient in RAD51, indicating resected DNA unable to complete HR repair. Our findings suggest that PNAs form in response to persistent rDNA damage within the nucleolar cap, highlighting the interplay between PML/PNAs and rDNA alterations due to topological stress, RNAPI inhibition, and rDNA DSBs destined for HR. Cells with persistent PNAs undergo senescence, suggesting PNA’s help avoid rDNA instability, with implications for tumorigenesis and aging.

Publisher

eLife Sciences Publications, Ltd

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