2023
DOI: 10.1002/em.22564
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Templated insertions—DNA repair gets acrobatic

Abstract: Deletions associated with the repair of DNA double‐strand breaks is a source of genetic alternation and a recognized source of disease‐causing mutagenesis. Theta‐mediated end joining is a DNA repair mechanism, which guarantees deletions by its employment of microhomology (MH) alignment to facilitate end joining. A lesser‐characterized templated insertion ability of this pathway, on the other hand, is associated with both deletion and insertion. This mechanism is characterized by at least one round of polymeras… Show more

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Cited by 4 publications
(5 citation statements)
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“…Analysis of TINS repair products from a CAS9-geneared DSB at the Lamin B Receptor locus in human retinal pigment epithelial cells (RPE1), ssTINS was found to account for 30% of TINS repair products and was dependent on Pol theta (Stroik et al, 2024). Furthermore, the authors discussed how TINS serves as a driver or passenger mutation in cancer, and how Pol theta-mediated TINS is associated with CAG repeat expansion and associated genetic disorders (Stroik et al, 2024). Future characterization of TINS mechanisms will help to provide novel insight into therapeutic treatment options.…”
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confidence: 99%
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“…Analysis of TINS repair products from a CAS9-geneared DSB at the Lamin B Receptor locus in human retinal pigment epithelial cells (RPE1), ssTINS was found to account for 30% of TINS repair products and was dependent on Pol theta (Stroik et al, 2024). Furthermore, the authors discussed how TINS serves as a driver or passenger mutation in cancer, and how Pol theta-mediated TINS is associated with CAG repeat expansion and associated genetic disorders (Stroik et al, 2024). Future characterization of TINS mechanisms will help to provide novel insight into therapeutic treatment options.…”
mentioning
confidence: 99%
“…with emphasis on their importance for basic and environmental health sciences. This SI includes two research articles, one brief communication, and four reviews (Hoag et al, 2024;Hua & Sweasy, 2024;Hussen et al, 2024;Minko et al, 2024;Sobol, 2024;Stroik et al, 2024;Wilson & Wyrick, 2024). The findings and perspectives from this SI may help to better understand how DNA damage and DNA repair mechanisms can provide novel insights into environmentally-induced human disease such as cancer.…”
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confidence: 99%
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