Cell Cycle Proteins

Displaying 1 - 16 of 16CSV
Syphers, J. L., Wright, J. A., Liu, S., Gee, Y. S., Gao, F., Mudududdla, R., Che, D. Q., Chang, A., Sloan, E. K., Narasimhan, V., Heriot, A., Ramsay, R. G., de Nys, R., Silva, T. N., Vrbanac, L., Sammour, T., Lawrence, M. J., Tin, T., Maddern, G. J., … Baell, J. B. (2025). Discovery of WEE1 Kinase Inhibitors with Potent Activity against Patient-Derived, Metastatic Colorectal Cancer Organoids. Journal of Medicinal Chemistry, 68(8), 8065–8090. https://doi.org/10.1021/acs.jmedchem.4c02541
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Quintanal-Villalonga, A., Kawasaki, K., Redin, E., Uddin, F., Rakhade, S., Durani, V., Sabet, A., Shafer, M., Karthaus, W. R., Zaidi, S., Zhan, Y. A., Manoj, P., Sridhar, H., Kinyua, D., Zhong, H., Mello, B. P., Ciampricotti, M., Bhanot, U. K., Linkov, I., … Rudin, C. M. (2024). CDC7 inhibition impairs neuroendocrine transformation in lung and prostate tumors through MYC degradation. Signal Transduction and Targeted Therapy, 9(1). https://doi.org/10.1038/s41392-024-01908-y
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Hassan, N., Yi, H., Malik, B., Gaspard-Boulinc, L., Samaraweera, S. E., Casolari, D. A., Seneviratne, J., Balachandran, A., Chew, T., Duly, A., Carter, D. R., Cheung, B. B., Norris, M., Haber, M., Kavallaris, M., Marshall, G. M., Zhang, X. D., Liu, T., Wang, J., … Wang, J. Y. (2024). Loss of the stress sensor GADD45A promotes stem cell activity and ferroptosis resistance in LGR4/HOXA9-dependent AML. Blood, 144(1), 84–98. https://doi.org/10.1182/blood.2024024072
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Lu, Z., Wang, Y., Assumpção, A. L. F. V., Liu, P., Kopp, A., Saka, S., Mcilwain, S. J., Viny, A. D., Brand, M., & Pan, X. (2024). Yin Yang 1 regulates cohesin complex protein SMC3 in mouse hematopoietic stem cells. Blood Advances, 8(12), 3076–3091. https://doi.org/10.1182/bloodadvances.2023011411
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Broustas, C. G., Mukherjee, S., Shuryak, I., Taraboletti, A., Angdisen, J., Ake, P., Fornace, A. J., & Amundson, S. A. (2023). Impact of GADD45A on Radiation Biodosimetry Using Mouse Peripheral Blood. Radiation Research, 200(3). https://doi.org/10.1667/rade-23-00052.1
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Girish, V., Lakhani, A. A., Thompson, S. L., Scaduto, C. M., Brown, L. M., Hagenson, R. A., Sausville, E. L., Mendelson, B. E., Kandikuppa, P. K., Lukow, D. A., Yuan, M. L., Stevens, E. C., Lee, S. N., Schukken, K. M., Akalu, S. M., Vasudevan, A., Zou, C., Salovska, B., Li, W., … Sheltzer, J. M. (2023). Oncogene-like addiction to aneuploidy in human cancers. Science, 381(6660). https://doi.org/10.1126/science.adg4521
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Lee, S. B., Garofano, L., Ko, A., D’Angelo, F., Frangaj, B., Sommer, D., Gan, Q., Kim, K., Cardozo, T., Iavarone, A., & Lasorella, A. (2022). Regulated interaction of ID2 with the anaphase-promoting complex links progression through mitosis with reactivation of cell-type-specific transcription. Nature Communications, 13(1). https://doi.org/10.1038/s41467-022-29502-2
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Zhou, D., Wu, Z., Park, J.-G., Fiches, G. N., Li, T.-W., Ma, Q., Huang, H., Biswas, A., Martinez-Sobrido, L., Santoso, N. G., & Zhu, J. (2022). FACT subunit SUPT16H associates with BRD4 and contributes to silencing of interferon signaling. Nucleic Acids Research, 50(15), 8700–8718. https://doi.org/10.1093/nar/gkac645
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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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Daum, H., Ganapathi, M., Hirsch, Y., Griffin, E. L., LeDuc, C. A., Hagen, J., Yagel, S., Meiner, V., Chung, W. K., & Mor‐Shaked, H. (2021). Bi‐allelic PAGR1 variants are associated with microcephaly and a severe neurodevelopmental disorder: Genetic evidence from two families. American Journal of Medical Genetics Part A, 188(1), 336–342. Portico. https://doi.org/10.1002/ajmg.a.62513
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Tomioka, K., Miyamoto, T., Akutsu, S. N., Yanagihara, H., Fujita, K., Royba, E., Tauchi, H., Yamamoto, T., Koh, I., Hirata, E., Kudo, Y., Kobayashi, M., Okada, S., & Matsuura, S. (2021). NBS1 I171V variant underlies individual differences in chromosomal radiosensitivity within human populations. Scientific Reports, 11(1). https://doi.org/10.1038/s41598-021-98673-7
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Columbia Affiliation
Rivas, M. A., Durmaz, C., Kloetgen, A., Chin, C. R., Chen, Z., Bhinder, B., Koren, A., Viny, A. D., Scharer, C. D., Boss, J. M., Elemento, O., Mason, C. E., & Melnick, A. M. (2021). Cohesin Core Complex Gene Dosage Contributes to Germinal Center Derived Lymphoma Phenotypes and Outcomes. Frontiers in Immunology, 12. https://doi.org/10.3389/fimmu.2021.688493
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Serra-Cardona, A., Yu, C., Zhang, X., Hua, X., Yao, Y., Zhou, J., Gan, H., & Zhang, Z. (2021). A mechanism for Rad53 to couple leading- and lagging-strand DNA synthesis under replication stress in budding yeast. Proceedings of the National Academy of Sciences, 118(38). https://doi.org/10.1073/pnas.2109334118
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Wang, X. S., Menolfi, D., Wu-Baer, F., Fangazio, M., Meyer, S. N., Shao, Z., Wang, Y., Zhu, Y., Lee, B. J., Estes, V. M., Cupo, O. M., Gautier, J., Pasqualucci, L., Dalla-Favera, R., Baer, R., & Zha, S. (2021). DNA damage–induced phosphorylation of CtIP at a conserved ATM/ATR site T855 promotes lymphomagenesis in mice. Proceedings of the National Academy of Sciences, 118(38). https://doi.org/10.1073/pnas.2105440118
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