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  1. 1.   Tracking HIV-1-Infected Cell Clones Using Integration Site-Specific qPCR
  2. Brandt, Leah D; Guo,Amber; Joseph, Kevin W; Jacobs, Jana L; Naqvi, Asma; Coffin, John M; Kearney,Mary; Halvas, Elias K; Wu,Xiaolin; Hughes,Stephen; Mellors, John W
  3. Viruses. 2021, Jul; 13(7):
  1. 2.   The D2 and D3 sublineages of human papillomavirus 16-positive cervical cancer in Guatemala differ in integration rate and age of diagnosis
  2. Lou,Hong; Boland,Joseph; Torres-Gonzalez, Edmundo; Albanez, Anaseidy; Zhou,Weiyin; Steinberg,Mia; Diaw, Lena; Mitchell, Jason; Roberson, David; Cullen,Michael; Garland,Lisa; Bass,Sara; Burk, Robert D; Yeager,Meredith; Wentzensen, Nicolas; Schiffman, Mark; Alvirez Freites, Enrique; Gharzouzi, Eduardo; Mirabello, Lisa; Dean, Michael
  3. Cancer research. 2020, SEP 15; 80(18): 3803-3809.
  1. 3.   The role of integration and clonal expansion in HIV infection: live long and prosper
  2. Anderson, Elizabeth; Maldarelli, Frank
  3. Retrovirology. 2018, Oct 23; 15(1):
  1. 4.   Localization of ASV Integrase-DNA Contacts by Site-Directed Crosslinking and their Structural Analysis
  2. Peletskaya, E.; Andrake, M.; Gustchina, A.; Merkel, G.; Alexandratos, J.; Zhou, D. W.; Bojja, R. S.; Satoh, T.; Potapov, M.; Kogon, A.; Potapov, V.; Wlodawer, A.; Skalka, A. M.
  3. Plos One. 2011, Dec; 6(12):
  1. 5.   Activation of the Jun N-terminal kinase pathway by friend spleen focus-forming virus and its role in the growth and survival of friend virus-induced erythroleukemia cells
  2. Nishigaki, K.; Hanson, C.; Thompson, D.; Yugawa, T.; Ruscetti, S.
  3. Journal of Virology. 2005, OCT; 79(20): 12752-12762.
  1. 6.   Integration target site selection for retroviruses and transposable elements
  2. Wu, X.; Burgess, S. M.
  3. Cellular and Molecular Life Sciences. 2004, OCT; 61(19-20): 2588-2596.
  1. 7.   RTCGD: retroviral tagged cancer gene database
  2. Akagi, K.; Suzuki, T.; Stephens, R. M.; Jenkins, N. A.; Copeland, N. G.
  3. Nucleic Acids Research. 2004 32(Sp. Iss., Database Issue): D523-D527.
  1. 8.   Hematopoietic, angiogenic and eye defects in Meis1 mutant animals
  2. Hisa, T.; Spence, S. E.; Rachel, R. A.; Fujita, M.; Nakamura, T.; Ward, J. M.; Devor-Henneman, D. E.; Saiki, Y.; Kutsuna, H.; Tessarollo, L.; Jenkins, N. A.; Copeland, N. G.
  3. Embo Journal. 2004 23(2): 450-459.
  1. 9.   Early B-cell factor-associated zinc-finger gene is a frequent target of retroviral integration in murine B-cell lymphomas
  2. Warming, S.; Suzuki, T.; Yamaguchi, T. P.; Jenkins, N. A.; Copeland, N. G.
  3. Oncogene. 2004 23(15): 2727-2731.
  1. 10.   Transcription start regions in the human genome are favored targets for MLV integration
  2. Wu, X. L.; Li, Y.; Crise, B.; Burgess, S. M.
  3. Science. 2003 300(5626): 1749-1751.
  1. 11.   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. 12.   Structural basis for inactivating mutations and pH-dependent activity of avian sarcoma virus integrase
  2. Lubkowski, J.; Yang, F.; Alexandratos, J.; Merkel, G.; Katz, R. A.; Gravuer, K.; Skalka, A. M.; Wlodawer, A.
  3. Journal of Biological Chemistry. 1998 273(49): 32685-32689.
  1. 13.   The Genes Encoding the Peripheral Cannabinoid Receptor and Alpha-L-Fucosidase Are Located Near a Newly Identified Common Virus Integration Site, Evi11
  2. Valk, P. J. M.; Hol, S.; Vankan, Y.; Ihle, J. N.; Askew, D.; Jenkins, N. A.; Gilbert, D. J.; Copeland, N. G.; Deboth, N. J.; Lowenberg, B.; Delwel, R.
  3. Journal of Virology. 1997 71(9): 6796-6804.
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