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  1. 1.   Characterizing the genetic basis of methylome diversity in histologically normal human lung tissue
  2. Shi, J.; Marconett, C. N.; Duan, J.; Hyl, P. L.; Li, P.; Wang, Z.; Wheeler, W.; Zhou, B.; Campan, M.; Lee, D. S.; Huang, J.; Zhou, W.; Triche, T.; Amundadottir, L.; Warner, A.; Hutchinson, A.; Chen, P. H.; Chung, B. S.; Pesatori, A. C.; Consonni, D.; Bertazzi, P. A.; Bergen, A. W.; Freedman, M.; Siegmund, K. D.; Berman, B. P.; Borok, Z.; Chatterjee, N.; Tucker, M. A.; Caporaso, N. E.; Chanock, S. J.; Laird-Offringa, I. A.; Landi, M. T.
  3. Nature Communications. 2014, 27-Feb; 5: 3365.
  1. 2.   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. 3.   Detailed DNA methylation profiles of the E-cadherin promoter in the NCI-60 cancer cells
  2. Reinhold, W. C.; Reimers, M. A.; Maunakea, A. K.; Kim, S.; Lababidi, S.; Scherf, U.; Shankavaram, U. T.; Ziegler, M. S.; Stewart, C.; Kouros-Mehr, H.; Cui, H. M.; Dolginow, D.; Scudiero, D. A.; Pommier, Y. G.; Munroe, D. J.; Feinberg, A. P.; Weinstein, J. N.
  3. Molecular Cancer Therapeutics. 2007, Feb; 6(2): 391-403.
  1. 4.   The novel DNA methylation inhibitor zebularine is effective against the development of murine T-cell lymphoma
  2. Herranz, M.; Martin-Caballero, J.; Fraga, M. F.; Ruiz-Cabello, J.; Flores, J. M.; Desco, M.; Marquez, V.; Esteller, M.
  3. Blood. 2006, FEB 1; 107(3): 1174-1177.
  1. 5.   Gene promoter methylation in prostate tumor-associated stromal cells
  2. Hanson, J. A.; Gillespie, J. W.; Grover, A.; Tangrea, M. A.; Chuaqui, R. F.; Emmert-Buck, M. R.; Tangrea, J. A.; Libutti, S. K.; Linehan, W. M.; Woodson, K. G.
  3. Journal of the National Cancer Institute. 2006, Feb; 98(4): 255-261.
  1. 6.   Spreading of methylation within RUNX3 CpG island in gastric cancer
  2. Homma, N.; Tamura, G.; Honda, T.; Matsumoto, Y.; Nishizuka, S.; Kawata, S.; Motoyama, T.
  3. Cancer Science. 2006, JAN; 97(1): 51-56.
  1. 7.   Simian immunodeficiency virus integration preference is similar to that of human immunodeficiency virus type 1
  2. Crise, B.; Li, Y.; Yuan, C. C.; Morcock, D. R.; Whitby, D.; Munroe, D. J.; Arthur, L. O.; Wu, X. L.
  3. Journal of Virology. 2005, OCT; 79(19): 12199-12204.
  1. 8.   Enhancement of in vitro and in vivo tumor cell radiosensitivity by the DNA methylation inhibitor zebularine
  2. Dote, H.; Cerna, D.; Burgan, W. E.; Carter, D. J.; Cerra, M. A.; Hollingshead, M. G.; Camphausen, K.; Tofilon, P. J.
  3. Clinical Cancer Research. 2005, JUN 15; 11(12): 4571-4579.
  1. 9.   Interleukin 6 supports the maintenance of p53 tumor suppressor gene promoter methylation
  2. Hodge, D. R.; Peng, B.; Cherry, J. C.; Hurt, E. M.; Fox, S. D.; Kelley, J. A.; Munroe, D. J.; Farrar, W. L.
  3. Cancer Research. 2005, JUN 1; 65(11): 4673-4682.
  1. 10.   Large-scale molecular characterization of adeno-associated virus vector integration in mouse liver
  2. Nakai, H.; Wu, X. L.; Fuess, S.; Storm, T. A.; Munroe, D.; Montini, E.; Burgess, S. M.; Grompe, M.; Kay, M. A.
  3. Journal of Virology. 2005, MAR; 79(6): 3606-3614.
  1. 11.   Transcriptional regulator CTCF controls human interleukin 1 receptor-associated kinase 2 promoter
  2. Kuzmin, I.; Geil, L.; Gibson, L.; Cavinato, T.; Loukinov, D.; Lobanenkov, V.; Lerman, M. I.
  3. Journal of Molecular Biology. 2005, FEB 18; 346(2): 411-422.
  1. 12.   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. 13.   Continuous zebularine treatment effectively sustains demethylation in human bladder cancer cells
  2. Cheng, J. C.; Weisenberger, D. J.; Gonzales, F. A.; Liang, G. N.; Xu, G. L.; Hu, Y. G.; Marquez, V. E.; Jones, P. A.
  3. Molecular and Cellular Biology. 2004 24(3): 1270-1278.
  1. 14.   Inactivation of RAS association domain family 1A gene in cervical carcinomas and the role of human papillomavirus infection
  2. Kuzmin, I.; Liu, L. M.; Dammann, R.; Geil, L.; Stanbridge, E. J.; Wilczynski, S. P.; Lerman, M. I.; Pfeifer, G. P.
  3. Cancer Research. 2003 63(8): 1888-1893.
  1. 15.   Sint1, a common integration site in SL3-3-induced T-cell lymphomas, harbors a putative proto-oncogene with homology to the septin gene family
  2. Sorensen, A. B.; Lund, A. H.; Ethelberg, S.; Copeland, N. G.; Jenkins, N. A.; Pedersen, F. S.
  3. Journal of Virology. 2000 74(5): 2161-2168.
  1. 16.   Analysis of NotI linking clones isolated from human chromosome 3 specific libraries
  2. Kashuba, V. I.; Gizatullin, R. Z.; Protopopov, A. I.; Li, J.; Vorobieva, N. V.; Fedorova, L.; Zabarovska, V. I.; Muravenko, O. V.; Kost-Alimova, M.; Domninsky, D. A.; Kiss, C.; Allikmets, R.; Zakharyev, V. M.; Braga, E. A.; Sumegi, J.; Lerman, M.; Wahlestedt, C.; Zelenin, A. V.; Sheer, D.; Winberg, G.; Grafodatsky, A.; Kisselev, L. L.; Klein, G.; Zabarovsky, E. R.
  3. Gene. 1999 239(2): 259-271.
  1. 17.   Analysis of aberrant methylation of the VHL gene by transgenes, monochromosome transfer, and cell fusion
  2. Kuzmin, I.; Geil, L.; Ge, H. Y.; Bengtsson, U.; Duh, F. M.; Stanbridge, E. J.; Lerman, M. I.
  3. Oncogene. 1999 18(41): 5672-5679.
  1. 18.   Characterization of a Yac Contig Containing the Nbccs Locus and a Novel Kruppel-Type Zinc Finger Sequence On Chromosome Segment 9q22.3
  2. Chidambaram, A.; Gailani, M.; Gerrard, B.; Stewart, C.; Goldstein, A.; Chumakov, I.; Bale, A. E.; Dean, M.
  3. Genes Chromosomes & Cancer. 1997 18(3): 212-218.
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