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Alternative lengthening of telomeres (ALT) cells viability is dependent on C-rich telomeric RNAs
Journal
Nature Communications
ISSN
2041-1723
Date Issued
2023-11-04
WoS ID
WOS:001100866900026
Abstract
Alternative lengthening of telomeres (ALT) is a telomere maintenance mechanism activated in ~10–15% of cancers, characterized by telomeric damage. Telomeric damage-induced long non-coding RNAs (dilncRNAs) are transcribed at dysfunctional telomeres and contribute to telomeric DNA damage response (DDR) activation and repair. Here we observed that telomeric dilncRNAs are preferentially elevated in ALT cells. Inhibition of C-rich (teloC) dilncRNAs with antisense oligonucleotides leads to DNA replication stress responses, increased genomic instability, and apoptosis induction selectively in ALT cells. Cell death is dependent on DNA replication and is increased by DNA replication stress. Mechanistically, teloC dilncRNA inhibition reduces RAD51 and 53BP1 recruitment to telomeres, boosts the engagement of BIR machinery, and increases C-circles and telomeric sister chromatid exchanges, without increasing telomeric non-S phase synthesis. These results indicate that teloC dilncRNA is necessary for a coordinated recruitment of DDR factors to ALT telomeres and it is essential for ALT cancer cells survival.
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Author(s)
Ilaria Rosso
Corey Jones-Weinert
Francesca Rossiello
Matteo Cabrini
Silvia Brambillasca
Zeno Lavagnino
Emanuele Martini
Enzo Tedone
Massimiliano Garre’
Julio Aguado
Dario Parazzoli
Marina Mione
Jerry W. Shay
Ciro Mercurio
Fabrizio d’Adda di Fagagna