DNA Breaks, Double-Stranded

Displaying 1 - 12 of 12CSV
Kimble, M. T., Sane, A., Reid, R. J. D., Johnson, M. J., Rothstein, R., & Symington, L. S. (2025). Repair of replication-dependent double-strand breaks differs between the leading and lagging strands. Molecular Cell, 85(1), 61-77.e6. https://doi.org/10.1016/j.molcel.2024.10.032
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Salunkhe, S., Daley, J. M., Kaur, H., Tomimatsu, N., Xue, C., Raina, V. B., Jasper, A. M., Rogers, C. M., Li, W., Zhou, S., Mojidra, R., Kwon, Y., Fang, Q., Ji, J.-H., Badamchi Shabestari, A., Fitzgerald, O., Dinh, H., Mukherjee, B., Habib, A. A., … Sung, P. (2024). Promotion of DNA end resection by BRCA1–BARD1 in homologous recombination. Nature, 634(8033), 482–491. https://doi.org/10.1038/s41586-024-07910-2
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Jeon, Y., Lu, Y., Ferrari, M. M., Channagiri, T., Xu, P., Meers, C., Zhang, Y., Balachander, S., Park, V. S., Marsili, S., Pursell, Z. F., Jonoska, N., & Storici, F. (2024). RNA-mediated double-strand break repair by end-joining mechanisms. Nature Communications, 15(1). https://doi.org/10.1038/s41467-024-51457-9
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Galanti, L., Peritore, M., Gnügge, R., Cannavo, E., Heipke, J., Palumbieri, M. D., Steigenberger, B., Symington, L. S., Cejka, P., & Pfander, B. (2024). Dbf4-dependent kinase promotes cell cycle controlled resection of DNA double-strand breaks and repair by homologous recombination. Nature Communications, 15(1). https://doi.org/10.1038/s41467-024-46951-z
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Georgieva, D., Wang, N., Taglialatela, A., Jerabek, S., Reczek, C. R., Lim, P. X., Sung, J., Du, Q., Horiguchi, M., Jasin, M., Ciccia, A., Baer, R., & Egli, D. (2024). BRCA1 and 53BP1 regulate reprogramming efficiency by mediating DNA repair pathway choice at replication-associated double-strand breaks. Cell Reports, 43(4), 114006. https://doi.org/10.1016/j.celrep.2024.114006
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Min, J., Zhao, J., Zagelbaum, J., Lee, J., Takahashi, S., Cummings, P., Schooley, A., Dekker, J., Gottesman, M. E., Rabadan, R., & Gautier, J. (2023). Mechanisms of insertions at a DNA double-strand break. Molecular Cell, 83(14), 2434-2448.e7. https://doi.org/10.1016/j.molcel.2023.06.016
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Gnügge, R., Reginato, G., Cejka, P., & Symington, L. S. (2023). Sequence and chromatin features guide DNA double-strand break resection initiation. Molecular Cell, 83(8), 1237-1250.e15. https://doi.org/10.1016/j.molcel.2023.02.010
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Raina, V. B., Schoot Uiterkamp, M., & Vader, G. (2023). Checkpoint control in meiotic prophase: Idiosyncratic demands require unique characteristics. Meiosis in Development and Disease, 281–315. https://doi.org/10.1016/bs.ctdb.2022.04.007
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Park, D., Gharghabi, M., Reczek, C. R., Plow, R., Yungvirt, C., Aldaz, C. M., & Huebner, K. (2022). Wwox Binding to the Murine Brca1-BRCT Domain Regulates Timing of Brip1 and CtIP Phospho-Protein Interactions with This Domain at DNA Double-Strand Breaks, and Repair Pathway Choice. International Journal of Molecular Sciences, 23(7), 3729. https://doi.org/10.3390/ijms23073729
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Rousová, D., Nivsarkar, V., Altmannova, V., Raina, V. B., Funk, S. K., Liedtke, D., Janning, P., Müller, F., Reichle, H., Vader, G., & Weir, J. R. (2021). Novel mechanistic insights into the role of Mer2 as the keystone of meiotic DNA break formation. ELife, 10. CLOCKSS. https://doi.org/10.7554/elife.72330
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