Article
CtIP-dependent nascent RNA expression flanking DNA breaks guides the choice of DNA repair pathway
Author/s | Gómez Cabello, Daniel
Pappas, George Aguilar Morante, Diana Dinant, Christoffel Bartek, Jiri |
Department | Universidad de Sevilla. Departamento de Genética |
Publication Date | 2022 |
Deposit Date | 2022-10-04 |
Published in |
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Abstract | The RNA world is changing our views about sensing and resolution of DNA damage. Here, we develop single-molecule DNA/RNA analysis approaches to visualize how nascent RNA facilitates the repair of DNA double-strand breaks ... The RNA world is changing our views about sensing and resolution of DNA damage. Here, we develop single-molecule DNA/RNA analysis approaches to visualize how nascent RNA facilitates the repair of DNA double-strand breaks (DSBs). RNA polymerase II (RNAPII) is crucial for DSB resolution in human cells. DSB-flanking, RNAPII-generated nascent RNA forms RNA:DNA hybrids, guiding the upstream DNA repair steps towards favouring the error-free Homologous Recombination (HR) pathway over Non-Homologous End Joining. Specific RNAPII inhibitor, THZ1, impairs recruitment of essential HR proteins to DSBs, implicating nascent RNA in DNA end resection, initiation and execution of HR repair. We further propose that resection factor CtIP interacts with and helps re-activate RNAPII when paused by the RNA:DNA hybrids, collectively promoting faithful repair of chromosome breaks to maintain genomic integrity. |
Funding agencies | Danish Cancer Society. Demmark Lundbeck Foundation Danish Council for Independent Research. Demmark Novo Nordisk Foundation Swedish Research Council Swedish Cancer Foundation/Cancerfonden. Sweden Danish National Research Foundation |
Project ID. | R1123-A7785-15-S2
R266- 2017-4289 #DFF-7016- 00313 16854 NNF20OC0060590 VR-MH 2014- 46602-117891-30 #170176 DNRF 125 |
Citation | Gómez Cabello, D., Pappas, G., Aguilar Morante, D., Dinant, C. y Bartek, J. (2022). CtIP-dependent nascent RNA expression flanking DNA breaks guides the choice of DNA repair pathway. Nature Communications, 13 (1), 5303. https://doi.org/10.1038/s41467-022-33027-z. |
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