Donita C. Brady, Ph.D.

Affiliations: 
2008 Pharmacology University of North Carolina, Chapel Hill, Chapel Hill, NC 
Area:
Cell Biology, Molecular Biology
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"Donita Brady"

Parents

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Adrienne D. Cox grad student 2008 UNC Chapel Hill
 (The transforming Rho family GTPase, Wrch -1, regulates epithelial cell morphogenesis through modulating cell junctions and actin cytoskeletal dynamics.)
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Publications

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Chojnowski JE, Li R, Tsang T, et al. (2022) Copper Modulates the Catalytic Activity of Protein Kinase CK2. Frontiers in Molecular Biosciences. 9: 878652
Brady DC, Hmeljak J, Dar AC. (2022) Understanding and drugging RAS: 40 years to break the tip of the iceberg. Disease Models & Mechanisms. 15
Tsang T, Posimo JM, Gudiel AA, et al. (2020) Copper is an essential regulator of the autophagic kinases ULK1/2 to drive lung adenocarcinoma. Nature Cell Biology
Kim YJ, Tsang T, Anderson GR, et al. (2020) Inhibition of BCL2 family members increases the efficacy of copper chelation in BRAFV600E-driven melanoma. Cancer Research
Rasool RU, Natesan R, Deng Q, et al. (2019) CDK7 inhibition suppresses Castration-Resistant Prostate Cancer through MED1 inactivation. Cancer Discovery
Chung CY, Posimo JM, Lee S, et al. (2019) Activity-based ratiometric FRET probe reveals oncogene-driven changes in labile copper pools induced by altered glutathione metabolism. Proceedings of the National Academy of Sciences of the United States of America
Kim YJ, Bond GJ, Tsang T, et al. (2019) Copper chaperone ATOX1 is required for MAPK signaling and growth in BRAF mutation-positive melanoma. Metallomics : Integrated Biometal Science
Katona BW, Glynn RA, Paulosky KE, et al. (2019) Combined menin and EGFR inhibitors synergize to suppress colorectal cancer via EGFR-independent and calcium-mediated repression of SKP2 transcription. Cancer Research
Rasool R, Natesan R, deng q, et al. (2019) Abstract B016: CDK7 inhibition suppresses AR addicted Castration-Resistant Prostate Cancer through MED1 inactivation Molecular Cancer Therapeutics. 18
Sadeghi RS, Kulej K, Kathayat RS, et al. (2018) Wnt5a signaling induced phosphorylation increases APT1 activity and promotes melanoma metastatic behavior. Elife. 7
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