Saccharomyces cerevisiae

Displaying 1 - 10 of 10CSV
Mangione, R. M., Pierce, S., Zheng, M., Martin, R. M., Goncalves, C., Kumar, A., Scaglione, S., de Sousa Morgado, C., Penzo, A., Lancrey, A., Reid, R. J. D., Lautier, O., Gaillard, P.-H., Stirling, P. C., de Almeida, S. F., Rothstein, R., & Palancade, B. (2025). DNA lesions can frequently precede DNA:RNA hybrid accumulation. Nature Communications, 16(1). https://doi.org/10.1038/s41467-025-57588-x
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Duan, S., Nodelman, I. M., Zhou, H., Tsukiyama, T., Bowman, G. D., & Zhang, Z. (2025). H3K56 acetylation regulates chromatin maturation following DNA replication. Nature Communications, 16(1). https://doi.org/10.1038/s41467-024-55144-7
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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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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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Rangan, R., Feathers, R., Khavnekar, S., Lerer, A., Johnston, J. D., Kelley, R., Obr, M., Kotecha, A., & Zhong, E. D. (2024). CryoDRGN-ET: deep reconstructing generative networks for visualizing dynamic biomolecules inside cells. Nature Methods, 21(8), 1537–1545. https://doi.org/10.1038/s41592-024-02340-4
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Meir, A., Raina, V. B., Rivera, C. E., Marie, L., Symington, L. S., & Greene, E. C. (2023). The separation pin distinguishes the pro– and anti–recombinogenic functions of Saccharomyces cerevisiae Srs2. Nature Communications, 14(1). https://doi.org/10.1038/s41467-023-43918-4
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Gaspary, A., Laureau, R., Dyatel, A., Dursuk, G., Simon, Y., & Berchowitz, L. E. (2023). Rie1 and Sgn1 form an RNA-binding complex that enforces the meiotic entry cell fate decision. Journal of Cell Biology, 222(11). https://doi.org/10.1083/jcb.202302074
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Ottoz, D. S., Tang, L. C., Dyatel, A. E., Jovanovic, M., & Berchowitz, L. E. (2023). Assembly and function of the amyloid‐like translational repressor Rim4 is coupled with nutrient conditions. The EMBO Journal, 42(23). Portico. https://doi.org/10.15252/embj.2022113332
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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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