Emily J. Noonan, Ph.D.

Affiliations: 
2006 University of Connecticut, Storrs, CT, United States 
Area:
Cell Biology, Molecular Biology
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"Emily Noonan"

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Lawrence E. Hightower grad student 2006 University of Connecticut
 (The role of Hsp70B' in the cellular stress response.)
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Publications

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Jacobs ME, Kathpalia PP, Chen Y, et al. (2016) SGK1 Regulation by miR-466g in Cortical Collecting Duct Cells. American Journal of Physiology. Renal Physiology. ajprenal.00024.2016
Place RF, Noonan EJ. (2014) Non-coding RNAs turn up the heat: an emerging layer of novel regulators in the mammalian heat shock response. Cell Stress & Chaperones. 19: 159-72
Place RF, Wang J, Noonan EJ, et al. (2012) Formulation of Small Activating RNA Into Lipidoid Nanoparticles Inhibits Xenograft Prostate Tumor Growth by Inducing p21 Expression. Molecular Therapy. Nucleic Acids. 1: e15
Tang H, Lee M, Sharpe O, et al. (2012) Oxidative stress-responsive microRNA-320 regulates glycolysis in diverse biological systems. Faseb Journal : Official Publication of the Federation of American Societies For Experimental Biology. 26: 4710-21
Xiang H, Noonan EJ, Wang J, et al. (2011) The Immunoglobulin Heavy Chain Gene 3’ Enhancers Induce Bcl2 Deregulation and Lymphomagenesis in Murine B Cells Leukemia. 25: 1484-1493
Wang J, Place RF, Huang V, et al. (2010) Prognostic value and function of KLF4 in prostate cancer: RNAa and vector-mediated overexpression identify KLF4 as an inhibitor of tumor cell growth and migration. Cancer Research. 70: 10182-91
Noonan EJ, Place RF, Basak S, et al. (2010) miR-449a causes Rb-dependent cell cycle arrest and senescence in prostate cancer cells. Oncotarget. 1: 349-58
Whitson JM, Noonan EJ, Pookot D, et al. (2009) Double stranded-RNA-mediated activation of P21 gene induced apoptosis and cell cycle arrest in renal cell carcinoma International Journal of Cancer. 125: 446-452
Noonan EJ, Place RF, Pookot D, et al. (2009) miR-449a targets HDAC-1 and induces growth arrest in prostate cancer. Oncogene. 28: 1714-24
Basak S, Pookot D, Noonan EJ, et al. (2008) Genistein down-regulates androgen receptor by modulating HDAC6-Hsp90 chaperone function. Molecular Cancer Therapeutics. 7: 3195-202
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