Moran Choe, Ph.D.
Affiliations: | 2013 | Biochemistry | University of Maryland School of Medicine, Baltimore, MD, United States |
Area:
Cell Biology, BiochemistryGoogle:
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Parents
Sign in to add mentorAntonino Passaniti | grad student | 2013 | University of Maryland Medical School | |
(An oncogenic role for RUNX2 in breast cancer progression and glucose metabolism through regulation of SIRT6.) |
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Publications
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Kim, Choe M, Cho H, et al. (2016) Abstract P5-05-02: Regulation of glucose metabolism by the RUNX2 transcription factor has a negative impact on mitochondrial function in breast cancer cells Cancer Research. 76 |
Brusgard JL, Choe M, Chumsri S, et al. (2015) RUNX2 and TAZ-dependent signaling pathways regulate soluble E-Cadherin levels and tumorsphere formation in breast cancer cells. Oncotarget. 6: 28132-50 |
Choe M, Brusgard JL, Chumsri S, et al. (2015) The RUNX2 Transcription Factor Negatively Regulates SIRT6 Expression to Alter Glucose Metabolism in Breast Cancer Cells. Journal of Cellular Biochemistry |
Kang YH, Kim DJ, Kim KK, et al. (2014) Study of the mechanisms underlying increased glucose absorption in Smilax china L. leaf extract-treated HepG2 cells Journal of Nutrition and Health. 47: 167-175 |
Underwood KF, Mochin MT, Brusgard JL, et al. (2013) A quantitative assay to study protein:DNA interactions, discover transcriptional regulators of gene expression, and identify novel anti-tumor agents. Journal of Visualized Experiments : Jove |
Underwood KF, D'Souza DR, Mochin-Peters M, et al. (2012) Regulation of RUNX2 transcription factor-DNA interactions and cell proliferation by vitamin D3 (cholecalciferol) prohormone activity. Journal of Bone and Mineral Research : the Official Journal of the American Society For Bone and Mineral Research. 27: 913-25 |
Passaniti T, Chumsri S, Girnun G, et al. (2010) Abstract P4-03-05: The Warburg Effect and RUNX2-Regulated Metabolic Switching in Breast Cancer: A New Therapeutic Target? Cancer Research. 70 |
Choe M, Reznikoff WS. (1993) Identification of the regulatory sequence of anaerobically expressed locus aeg-46.5. Journal of Bacteriology. 175: 1165-72 |