Katerina D. Fagan-Solis, Ph.D.

Affiliations: 
2013 Molecular & Cellular Biology University of Massachusetts, Amherst, Amherst, MA 
Area:
Molecular Biology, Oncology, Cell Biology
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"Katerina Fagan-Solis"

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Kathleen F. Arcaro grad student 2013 U Mass Amherst
 (Regulation and action of SKP2 and RhoA in cell and tumor models: Investigation into the molecular mechanisms responsible for the aggressive phenotype of triple-negative breast cancer.)
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Publications

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Fagan-Solis KD, Simpson DA, Kumar RJ, et al. (2020) A P53-Independent DNA Damage Response Suppresses Oncogenic Proliferation and Genome Instability. Cell Reports. 30: 1385-1399.e7
Reaves DK, Hoadley KA, Fagan-Solis K, et al. (2016) Nuclear localized LSR, a novel regulator of breast cancer behavior and tumorigenesis. Molecular Cancer Research : McR
Fagan-Solis KD, McDonald DA, Thorpe LW, et al. (2015) Abstract 1193: LSR transcript variant iota drives nuclear localization and altered transcriptome regulation in breast cancer Cancer Research. 75: 1193-1193
Fagan-Solis KD, Reaves DK, Rangel MC, et al. (2014) Challenging the roles of CD44 and lipolysis stimulated lipoprotein receptor in conveying Clostridium perfringens iota toxin cytotoxicity in breast cancer. Molecular Cancer. 13: 163
Reaves DK, Fagan-Solis KD, Dunphy K, et al. (2014) The role of lipolysis stimulated lipoprotein receptor in breast cancer and directing breast cancer cell behavior. Plos One. 9: e91747
Fagan-Solis KD, Pentecost BT, Gozgit JM, et al. (2014) SKP2 overexpression is associated with increased serine 10 phosphorylation of p27 (pSer10p27) in triple-negative breast cancer. Journal of Cellular Physiology. 229: 1160-9
Fleming JM, Reaves DK, Fagan-Solis KD, et al. (2014) Abstract 1987: The role of lipolysis-stimulated lipoprotein receptor in directing breast cancer cell behavior and subtype Cancer Research. 74: 1987-1987
Fagan-Solis KD, Schneider SS, Pentecost BT, et al. (2013) The RhoA pathway mediates MMP-2 and MMP-9-independent invasive behavior in a triple-negative breast cancer cell line. Journal of Cellular Biochemistry. 114: 1385-94
Fagan-Solis KD, Gogzit JM, Bentley BA, et al. (2013) Abstract 563: SKP2 overexpression is associated with increased serine-10 phosphorylation of p27 (pSer10p27) in triple-negative breast cancers. Cancer Research. 73: 563-563
Turk CM, Fagan-Solis KD, Williams KE, et al. (2012) Paralemmin-1 is over-expressed in estrogen-receptor positive breast cancers. Cancer Cell International. 12: 17
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