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  1. 1.   Inhibition of HSP 90 is associated with potent anti-tumor activity in Papillary Renal Cell Carcinoma
  2. Pahwa, Roma; Dubhashi, Janhavi; Singh, Anand; Jailwala, Parthav; Lobanov,Alexei; Thomas, Craig J; Ceribelli, Michele; Wilson, Kelli; Ricketts, Christopher J; Vocke, Cathy D; Wells, Catherine; Bottaro, Donald P; Linehan, W Marston; Neckers, Len; Srinivasan, Ramaprasad
  3. Journal of Experimental & Clinical Cancer Research : CR. 2022, Jun 27; 41(1): 208.
  1. 2.   The SNF2-like helicase HELLS mediates E2F3-dependent transcription and cellular transformation
  2. von Eyss, B.; Maaskola, J.; Memczak, S.; Mollmann, K.; Schuetz, A.; Loddenkemper, C.; Tanh, M. D.; Otto, A.; Muegge, K.; Heinemann, U.; Rajewsky, N.; Ziebold, U.
  3. Embo Journal. 2012, Feb; 31(4): 972-985.
  1. 3.   Genomic profiling of MicroRNA and messenger RNA reveals deregulated MicroRNA expression in prostate cancer
  2. Ambs, S.; Prueitt, R. L.; Yi, M.; Hudson, R. S.; Howe, T. M.; Petrocca, F.; Wallace, T. A.; Liu, C. G.; Volinia, S.; Calin, G. A.; Yfantis, H. G.; Stephens, R. M.; Croce, C. M.
  3. Cancer Research. 2008 68(15): 6162-6170.
  1. 4.   C/EBP beta cooperates with RB : E2F to implement Ras(V12)-induced cellular senescence
  2. Sebastian, T.; Malik, R.; Thomas, S.; Sage, J.; Johnson, P. F.
  3. Embo Journal. 2005, SEP 21; 24(18): 3301-3312.
  1. 5.   The cis decoy against the estrogen response element suppresses breast cancer cells via target disrupting c-fos not mitogen- activated protein kinase activity
  2. Wang, L. H.; Yang, X. Y.; Zhang, X. H.; Mihalic, K.; Xiao, W. H.; Farrar, W. L.
  3. Cancer Research. 2003 63(9): 2046-2051.
  1. 6.   Genetic and functional analysis of the von Hippel-Lindau (VHL) tumour suppressor gene promoter
  2. Zatyka, M.; Morrissey, C.; Kuzmin, I.; Lerman, M. I.; Latif, F.; Richards, F. M.; Maher, E. R.
  3. Journal of Medical Genetics. 2002 39(7): 463-472.
  1. 7.   E2F-1 induced apoptosis
  2. Phillips, A. C.; Vousden, K. H.
  3. Apoptosis. 2001 6(3): 173-182.
  1. 8.   Role for the p53 homologue p73 in E2F-1-induced apoptosis
  2. Irwin, M.; Marin, M. C.; Phillips, A. C.; Seelan, R. S.; Smith, D. I.; Liu, W. G.; Flores, E. R.; Tsai, K. Y.; Jacks, T.; Vousden, K. H.; Kaelin, W. G.
  3. Nature. 2000 407(6804): 645-648.
  1. 9.   Regulation and function of the p53-related proteins: same family, different rules
  2. Lohrum, M. A. E.; Vousden, K. H.
  3. Trends in Cell Biology. 2000 10(5): 197-202.
  1. 10.   Reversal of p53-induced cell-cycle arrest
  2. Bates, S.; Hickman, E. S.; Vousden, K. H.
  3. Molecular Carcinogenesis. 1999 24(1): 7-14.
  1. 11.   Analysis of the degradation function of Mdm2
  2. Kubbutat, M. H. G.; Ludwig, R. L.; Levine, A. J.; Vousden, K. H.
  3. Cell Growth and Differentiation. 1999 10(2): 87-92.
  1. 12.   Regulation and activation of p53 and its family members
  2. Lohrum, M. A. E.; Vousden, K. H.
  3. Cell Death and Differentiation. 1999 6(12): 1162-1168.
  1. 13.   Overexpression of P21(Waf1/Cip1) Arrests the Growth of Chicken Embryo Fibroblasts That Overexpress E2f1
  2. Givol, I.; Givol, D.; Hughes, S. H.
  3. Oncogene. 1998 16(24): 3115-3122.
  1. 14.   Induction of Dna Synthesis and Apoptosis Are Separable Functions of E2f-1
  2. Phillips, A. C.; Bates, S.; Ryan, K. M.; Helin, K.; Vousden, K. H.
  3. Genes & Development. 1997 11(14): 1853-1863.
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