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Publication : Transcription stress at telomeres leads to cytosolic DNA release and paracrine senescence.

First Author  Siametis A Year  2024
Journal  Nat Commun Volume  15
Issue  1 Pages  4061
PubMed ID  38744897 Mgi Jnum  J:348396
Mgi Id  MGI:7640851 Doi  10.1038/s41467-024-48443-6
Citation  Siametis A, et al. (2024) Transcription stress at telomeres leads to cytosolic DNA release and paracrine senescence. Nat Commun 15(1):4061
abstractText  Transcription stress has been linked to DNA damage -driven aging, yet the underlying mechanism remains unclear. Here, we demonstrate that Tcea1(-/-) cells, which harbor a TFIIS defect in transcription elongation, exhibit RNAPII stalling at oxidative DNA damage sites, impaired transcription, accumulation of R-loops, telomere uncapping, chromatin bridges, and genome instability, ultimately resulting in cellular senescence. We found that R-loops at telomeres causally contribute to the release of telomeric DNA fragments in the cytoplasm of Tcea1(-/-) cells and primary cells derived from naturally aged animals triggering a viral-like immune response. TFIIS-defective cells release extracellular vesicles laden with telomeric DNA fragments that target neighboring cells, which consequently undergo cellular senescence. Thus, transcription stress elicits paracrine signals leading to cellular senescence, promoting aging.
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