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  1. 1.   The Human TET2 Gene Contains Three Distinct Promoter Regions With Differing Tissue and Developmental Specificities
  2. Lou,Hong; Li,Hongchuan; Ho, Kevin J.; Cai, Luke L.; Huang, Andy S.; Shank, Tyler R.; Verneris, Michael R.; Nickerson, Michael L.; Dean, Michael; Anderson,Steve
  3. FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY. 2019, Jun 7; 7
  1. 2.   Viral DNA Replication Orientation and hnRNPs Regulate Transcription of the Human Papillomavirus 18 Late Promoter
  2. Wang, Xiaohong; Liu, Haibin; Ge, Hui; Ajiro, Masahiko; Sharma, Nishi R; Meyers, Craig; Morozov, Pavel; Tuschl, Thomas; Klar, Amar; Court, Don; Zheng, Zhi-Ming
  3. mBio. 2017, May 30; 8(3): pii: e00713-17.
  1. 3.   Structure and function of RapA: A bacterial Swi2/Snf2 protein required for RNA polymerase recycling in transcription
  2. Jin, D. J.; Zhou, Y. N.; Shaw, G.; Ji, X. H.
  3. Biochimica Et Biophysica Acta-Gene Regulatory Mechanisms. 2011, Sep; 1809(9): 470-475.
  1. 4.   Cutting Edge: KIR Antisense Transcripts Are Processed into a 28-Base PIWI-Like RNA in Human NK Cells
  2. Cichocki, F.; Lenvik, T.; Sharma, N.; Yun, G.; Anderson, S. K.; Miller, J. S.
  3. Journal of Immunology. 2010, Aug; 185(4): 2009-2012.
  1. 5.   Lsh Mediated RNA Polymerase II Stalling at HoxC6 and HoxC8 Involves DNA Methylation
  2. Tao, Y. G.; Xi, S. C.; Briones, V.; Muegge, K.
  3. Plos One. 2010, Feb; 5(2): e9163.
  1. 6.   DNA sequences in gal operon override transcription elongation blocks
  2. Lewis, D.; Komissarova, N.; Le, P.; Kashlev, M.; Adhya, S.
  3. Journal of Molecular Biology. 2008 382(4): 843-858.
  1. 7.   Molecular cloning of a brain-specific, developmentally regulated neuregulin 1 (NRG1) isoform and identification of a functional promoter variant associated with schizophrenia
  2. Tan, W.; Wang, Y. H.; Gold, B.; Chen, J. S.; Dean, M.; Harrison, P. J.; Weinberger, D. R.; Law, A. J.
  3. Journal of Biological Chemistry. 2007, Aug; 282(33): 24343-24351.
  1. 8.   Sequence analysis of p53 response-elements suggests multiple binding modes of the p53 tetramer to DNA targets
  2. Ma, B. Y.; Pan, Y. P.; Zheng, J.; Levine, A. J.; Nussinov, R.
  3. Nucleic Acids Research. 2007, May; 35(9): 2986-3001.
  1. 9.   Transcriptional regulation of NK cell receptors
  2. Anderson, S. K.
  3. Immunobiology of Natural Killer Cell Receptors. 2006; 298 : 59-75.
  1. 11.   Latent membrane protein 1 encoded by Epstein-Barr virus modulates directly and synchronously cyclin D1 and p16 by newly forming a c-Jun/Jun B heterodimer in nasopharyngeal carcinoma cell line
  2. Song, X.; Tao, Y. G.; Zeng, L.; Deng, X. Y.; Lee, L. M.; Gong, J. P.; Wu, Q.; Cao, Y.
  3. Virus Research. 2005, NOV; 113(2): 89-99.
  1. 12.   Echinomycin, a small-molecule inhibitor of hypoxia-inducible factor-1 DNA-binding activity
  2. Kong, D. H.; Park, E. J.; Stephen, A. G.; Calvani, M.; Cardellina, J. H.; Monks, A.; Fisher, R. J.; Shoemaker, R. H.; Melillo, G.
  3. Cancer Research. 2005, OCT 1; 65(19): 9047-9055.
  1. 13.   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. 14.   SspA is required for acid resistance in stationary phase by downregulation of H-NS in Escherichia coli
  2. Hansen, A. M.; Qiu, Y.; Yeh, N.; Blattner, F. R.; Durfee, T.; Jin, D. J.
  3. Molecular Microbiology. 2005, MAY; 56(3): 719-734.
  1. 15.   p53 is a suppressor of inflammatory response in mice
  2. Komarova, E. A.; Krivokrysenko, V.; Wang, K. H.; Neznanov, N.; Chernov, M. V.; Komarov, P. G.; Brennan, M. L.; Golovkina, T. V.; Rokhlin, O.; Kuprash, D. V.; Nedospasov, S. A.; Hazen, S. R.; Feinstein, E.; Gudkov, A. V.
  3. Faseb Journal. 2005, APR; 19(6): Published online April 5, 2005.
  1. 16.   Nuclear accumulation of epidermal growth factor receptor and acceleration of G1/S stage by Epstein-Barr-encoded oncoprotein latent membrane protein 1
  2. Tao, Y. G.; Xing, S.; Deng, X. Y.; Xie, D. X.; Lee, L. M.; Liu, Y. P.; Wei, L.; Li, L. L.; Lin, D.; Qiao, W.; Gong, J. P.; Ya, C.
  3. Experimental Cell Research. 2005, FEB 15; 303(2): 240-251.
  1. 17.   On the role of Cro in lambda prophage induction
  2. Svenningsen, S. L.; Costantino, N.; Court, D. L.; Adhya, S.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2005 102(12): 4465-4469.
  1. 19.   BCL-3 and NF-kappa B p50 attenuate lipopolysaccharide-induced inflammatory responses in macrophages
  2. Wessells, J.; Baer, M.; Young, H. A.; Claudio, E.; Brown, K.; Siebenlist, U.; Johnson, P. F.
  3. Journal of Biological Chemistry. 2004, NOV 26; 279(48): 49995-50003.
  1. 20.   Conformationally constrained diacylglycerol (DAG) analogs: 4-C-hydroxyethyl-5-O-acyl-2,3-dideoxy-D-glyceropentono-1,4-lactone analogs as protein kinase C (PKC) ligands
  2. Lee, J.; Kim, S. Y.; Kang, J. H.; Acs, G.; Acs, P.; Blumberg, P. M.; Marquez, V. E.
  3. European Journal of Medicinal Chemistry. 2004 39(1): 69-77.
  1. 21.   Mapping and characterization of the minimal internal ribosome entry segment in the human c-myc mRNA 5 ' untranslated region
  2. Cencig, S.; Nanbru, C.; Le, S. Y.; Gueydan, C.; Huez, G.; Kruys, V.
  3. Oncogene. 2004 23(1): 267-277.
  1. 22.   Microarray analysis of epigenetic silencing of gene expression in the KAS-6/1 multiple myeloma cell line
  2. Pompeia, C.; Hodge, D. R.; Plass, C.; Wu, Y. Z.; Marquez, V. E.; Kelley, J. A.; Farrar, W. L.
  3. Cancer Research. 2004 64(10): 3465-3473.
  1. 23.   Estrogen signaling in livers of male mice with hepatocellular carcinoma induced by exposure to arsenic in utero
  2. Waalkes, M. P.; Liu, J.; Chen, H.; Xie, Y. X.; Achanzar, W. E.; Zhou, Y. S.; Cheng, M. L.; Diwan, B. A.
  3. Journal of the National Cancer Institute. 2004 96(6): 466-474.
  1. 24.   Synthetic diacylglycerols (DAG) and DAG-lactones as activators of protein kinase C (PK-C)
  2. Marquez, V. E.; Blumberg, P. M.
  3. Accounts of Chemical Research. 2003 36(6): 434-443.
  1. 25.   Diacylglycerol (DAG)-lactones, a new class of protein kinase C (PKC) agonists, induce apoptosis in LNCaP prostate cancer cells by selective activation of PKC alpha
  2. Garcia-Bermejo, M. L.; Leskow, F. C.; Fujii, T.; Wang, Q. M.; Blumberg, P. M.; Ohba, M.; Kuroki, T.; Han, K. C.; Lee, J.; Marquez, V. E.; Kazanietz, M. G.
  3. Journal of Biological Chemistry. 2002 277(1): 645-655.
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