Ubiquitin-Protein Ligases

Displaying 1 - 10 of 10CSV
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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Dai, Z., Liang, L., Wang, W., Zuo, P., Yu, S., Liu, Y., Zhao, X., Lu, Y., Jin, Y., Zhang, F., Ding, D., Deng, W., & Yin, Y. (2024). Structural insights into the ubiquitylation strategy of the oligomeric CRL2FEM1B E3 ubiquitin ligase. The EMBO Journal, 43(6), 1089–1109. https://doi.org/10.1038/s44318-024-00047-y
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Kostyrko, K., Román, M., Lee, A. G., Simpson, D. R., Dinh, P. T., Leung, S. G., Marini, K. D., Kelly, M. R., Broyde, J., Califano, A., Jackson, P. K., & Sweet-Cordero, E. A. (2023). UHRF1 is a mediator of KRAS driven oncogenesis in lung adenocarcinoma. Nature Communications, 14(1). https://doi.org/10.1038/s41467-023-39591-2
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Moore, C. E., Yalcindag, S. E., Czeladko, H., Ravindranathan, R., Wijesekara Hanthi, Y., Levy, J. C., Sannino, V., Schindler, D., Ciccia, A., Costanzo, V., & Elia, A. E. H. (2023). RFWD3 promotes ZRANB3 recruitment to regulate the remodeling of stalled replication forks. Journal of Cell Biology, 222(5). https://doi.org/10.1083/jcb.202106022
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Hu, J., Waters, C. H., Spiegelman, D., Fon, E. A., Yu, E., Asayesh, F., Krohn, L., Saini, P., Alcalay, R. N., Hassin-Baer, S., Gan-Or, Z., Krainc, D., Zhang, B., Bustos, B. I., & Lubbe, S. J. (2022). Gene-based burden analysis of damaging private variants in PRKN, PARK7 and PINK1 in Parkinson’s disease cohorts of European descent. Neurobiology of Aging, 119, 136–138. https://doi.org/10.1016/j.neurobiolaging.2022.07.012
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Buckmaster, M. V., & Goff, S. P. (2022). Riplet Binds the Zinc Finger Antiviral Protein (ZAP) and Augments ZAP-Mediated Restriction of HIV-1. Journal of Virology, 96(16). https://doi.org/10.1128/jvi.00526-22
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Singhal, S. K., Byun, J. S., Yan, T., Yancey, R., Caban, A., Gil Hernandez, S., Bufford, S., Hewitt, S. M., Winfield, J., Pradhan, J., Mustkov, V., McDonald, J. A., Pérez-Stable, E. J., Nápoles, A. M., Vohra, N., De Siervi, A., Yates, C., Davis, M. B., Yang, M., … Gardner, K. (2022). Protein expression of the gp78 E3 ligase predicts poor breast cancer outcome based on race. JCI Insight, 7(13). https://doi.org/10.1172/jci.insight.157465
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Zhang, P., Gao, K., Zhang, L., Sun, H., Zhao, X., Liu, Y., Lv, Z., Shi, Q., Chen, Y., Jiao, D., Li, Y., Gu, W., & Wang, C. (2021). CRL2-KLHDC3 E3 ubiquitin ligase complex suppresses ferroptosis through promoting p14ARF degradation. Cell Death & Differentiation, 29(4), 758–771. https://doi.org/10.1038/s41418-021-00890-0
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Castellanos, C. A., Ren, X., Gonzalez, S. L., Li, H. K., Schroeder, A. W., Liang, H.-E., Laidlaw, B. J., Hu, D., Mak, A. C. Y., Eng, C., Rodríguez-Santana, J. R., LeNoir, M., Yan, Q., Celedón, J. C., Burchard, E. G., Zamvil, S. S., Ishido, S., Locksley, R. M., Cyster, J. G., … Shin, J.-S. (2021). Lymph node–resident dendritic cells drive TH2 cell development involving MARCH1. Science Immunology, 6(64). https://doi.org/10.1126/sciimmunol.abh0707
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