bioRxiv · 10.1101/2025.05.25.655982
The landscape and consequences of transcription stress
Abstract
Cancer is characterized by uncontrolled proliferation accompanied by the hypertranscription of oncogenes, leading to transcription stress, a key source of DNA double-strand breaks (DSBs) that jeopardize genomic stability. Yet, transcription stress is still underexplored. In this study, we utilized maps of DSBs identified through in-suspension break labeling in situ and sequencing (sBLISS), along with transcription stress markers, revealing that transcription stress regions coincide with the super-enhancer regulatory landscape. Notably, {gamma}H2AX mapping indicates its enrichment at transcription stress sites, while not all DSB-enriched genes show equal {gamma}H2AX marking, but those with DSBs tied to transcription stress are distinctly marked. Intriguingly, genes with high-DSBs marked by {gamma}H2AX exhibited significantly higher DSB turnover and repair than those with {gamma}H2AX-low genes, manifesting vulnerability to mutagenesis. These findings underscore super-enhancer activity as a determinant of the transcription stress landscape in cancer, posing a threat to the genomic stability of oncogenes.
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Aqeilan, R. I., Hidmi, O., Oster Flayshman, S., Shatleh, D., Monin, J.. 2025-05-25. The landscape and consequences of transcription stress. https://doi.org/10.1101/2025.05.25.655982
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