Angera H. Kuo, Ph.D.
Affiliations: | 2003 | Georgetown University Medical Center, Washington, DC, United States |
Area:
Cell Biology, Molecular Biology, OncologyGoogle:
"Angera Kuo"Mean distance: 23748
Parents
Sign in to add mentorAnton Wellstein | grad student | 2003 | Georgetown University Medical Center | |
(The role of insulin receptor substrate -1 in anaplastic lymphoma kinase signaling.) |
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Publications
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Sikandar SS, Gulati GS, Antony J, et al. (2022) Identification of a minority population of LMO2 breast cancer cells that integrate into the vasculature and initiate metastasis. Science Advances. 8: eabm3548 |
Zabala M, Lobo NA, Antony J, et al. (2020) LEFTY1 Is a Dual-SMAD Inhibitor that Promotes Mammary Progenitor Growth and Tumorigenesis. Cell Stem Cell |
Gulati GS, Sikandar SS, Wesche DJ, et al. (2020) Single-cell transcriptional diversity is a hallmark of developmental potential. Science (New York, N.Y.). 367: 405-411 |
Zabala M, Lobo NA, Seoane JA, et al. (2018) Abstract B67: The DLK1-DIO3 imprinted region regulates long-term proliferation in normal and malignant breast epithelium Molecular Cancer Research. 16 |
Sikandar SS, Kuo AH, Kalisky T, et al. (2017) Role of epithelial to mesenchymal transition associated genes in mammary gland regeneration and breast tumorigenesis. Nature Communications. 8: 1669 |
Betancur PA, Abraham BJ, Yiu YY, et al. (2017) A CD47-associated super-enhancer links pro-inflammatory signalling to CD47 upregulation in breast cancer. Nature Communications. 8: 14802 |
Cai S, Kalisky T, Sahoo D, et al. (2016) A Quiescent Bcl11b High Stem Cell Population Is Required for Maintenance of the Mammary Gland. Cell Stem Cell |
Kuo AH, Scheeren FA. (2014) Cell-intrinsic TLR2/MyD88 pathway in breast and colon cancer. Cell Cycle (Georgetown, Tex.). 13: 3785-6 |
Isobe T, Hisamori S, Hogan DJ, et al. (2014) miR-142 regulates the tumorigenicity of human breast cancer stem cells through the canonical WNT signaling pathway. Elife. 3 |
Scheeren FA, Kuo AH, van Weele LJ, et al. (2014) A cell-intrinsic role for TLR2-MYD88 in intestinal and breast epithelia and oncogenesis. Nature Cell Biology. 16: 1238-48 |