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  1. 1.   Promoterless Transposon Mutagenesis Drives Solid Cancers via Tumor Suppressor Inactivation
  2. Aiderus, Aziz; Contreras-Sandoval, Ana M; Meshey, Amanda L; Newberg, Justin Y; Ward, Jerrold M; Swing,Debbie; Copeland, Neal G; Jenkins, Nancy A; Mann, Karen M; Mann, Michael B
  3. Cancers. 2021, Jan 09; 13(2):
  1. 2.   Reverse Transcription in the Saccharomyces cerevisiae Long-Terminal Repeat Retrotransposon Ty3
  2. Rausch, Jason; Miller, Jennifer; Legrice, Stuart
  3. VIRUSES-BASEL. 2017, Mar; 9(3):
  1. 3.   Carnivore-Specific SINEs (Can-SINEs): Distribution, Evolution, and Genomic Impact
  2. Walters-Conte, K. B.; Johnson, D. L. E.; Allard, M. W.; Pecon-Slattery, J.
  3. Journal of Heredity. 2011, Sep-Oct; 102: S2-S10.
  1. 4.   Lens epithelium-derived growth factor fusion proteins redirect HIV-1 DNA integration
  2. Ferris, A. L.; Wu, X. L.; Hughes, C. M.; Stewart, C.; Smith, S. J.; Milne, T. A.; Wang, G. G.; Shun, M. C.; Allis, C. D.; Engelman, A.; Hughes, S. H.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2010, Feb 16; 107(7): 3135-3140.
  1. 5.   Revisiting Plus-Strand DNA Synthesis in Retroviruses and Long Terminal Repeat Retrotransposons: Dynamics of Enzyme: Substrate Interactions
  2. Fabris, D.; Marino, J. P.; Le Grice, S. F. J.
  3. Viruses-Basel. 2009, Dec; 1(3): 657-677.
  1. 6.   Ty3 Nuclear Entry Is Initiated by Viruslike Particle Docking on GLFG Nucleoporins
  2. Beliakova-Bethell, N.; Terry, L. J.; Bilanchone, V.; DaSilva, R.; Nagashima, K.; Wente, S. R.; S, meyer
  3. Journal of Virology. 2009 83(22): 11914-11925.
  1. 7.   Whole-Body Sleeping Beauty Mutagenesis Can Cause Penetrant Leukemia/Lymphoma and Rare High-Grade Glioma without Associated Embryonic Lethality
  2. Collier, L. S.; Adams, D. J.; Hackett, C. S.; Bendzick, L. E.; Akagi, K.; Davies, M. N.; Diers, M. D.; Rodriguez, F. J.; Bender, A. M.; Tieu, C.; Matise, I.; Dupuy, A. J.; Copeland, N. G.; Jenkins, N. A.; Hodgson, J. G.; Weiss, W. A.; Jenkins, R. B.
  3. Cancer Research. 2009 69(21): 8429-8437.
  1. 8.   Posttranslational interference of Ty1 retrotransposition by antisense RNAs
  2. Matsuda, E.; Garfinkel, D. J.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2009 106(37): 15657-15662.
  1. 9.   Ty3 nucleocapsid controls localization of particle assembly
  2. Larsen, L.; Beliakova-Bethell, N.; Bilanchone, V.; Zhang, M.; Lamsa, A.; DaSilva, R.; Hatfield, G. W.; Nagashima, K.; S, meyer
  3. Journal of Virology. 2008 82(5): 2501-2514.
  1. 10.   Human T-cell leukemia virus type 1 integration target sites in the human genome: Comparison with those of other retroviruses
  2. Derse, D.; Crise, B.; Li, Y.; Princler, G.; Lum, N.; Stewart, C.; McGrath, C. F.; Hughes, S. H.; Munroe, D. J.; Wu, X. L.
  3. Journal of Virology. 2007, Jun; 81(12): 6731-6741.
  1. 11.   Repetitive DNA elements as mediators of genomic change in response to environmental cues
  2. Schmidt, A. L.; Anderson, L. M.
  3. Biological Reviews. 2006, Nov; 81(4): 531-543.
  1. 12.   Examining Ty3 polypurine tract structure and function by nucleoside analog interference
  2. Dash, C.; Marino, J. P.; Le Grice, S. F. J.
  3. Journal of Biological Chemistry. 2006, FEB 3; 281(5): 2773-2783.
  1. 13.   Sensitive phenotypic detection of minor drug-resistant human immunodeficiency virus type 1 reverse transcriptase variants
  2. Nissley, D. V.; Halvas, E. K.; Hoppman, N. L.; Garfinkel, D. J.; Mellors, J. W.; Strathern, J. N.
  3. Journal of Clinical Microbiology. 2005, NOV; 43(11): 5696-5704.
  1. 14.   Ty1 copy number dynamics in Saccharomyces
  2. Garfinkel, D. J.; Nyswaner, K. M.; Stefanisko, K. M.; Chang, C.; Moore, S. P.
  3. Genetics. 2005, APR; 169(4): 1845-1857.
  1. 15.   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. 16.   Analysis of a Ty1-less variant of Saccharomyces paradoxus: the gain and loss of Ty1 elements
  2. Moore, S. P.; Liti, G.; Stefanisko, K. M.; Nyswaner, K. M.; Chang, C.; Louis, E. J.; Garfinkel, D.
  3. Yeast. 2004 21(8): 649-660.
  1. 17.   The Rad27 (Fen-1) nuclease inhibits Ty1 mobility in Saccharomyces cerevisiae
  2. Sundararajan, A.; Lee, B. S.; Garfinkel, D. J.
  3. Genetics. 2003 163(1): 55-67.
  1. 18.   Mutating conserved residues in the ribonuclease H domain of Ty3 reverse transcriptase affects specialized cleavage events
  2. Lener, D.; Budihas, S. R.; Le Grice, S. F. J.
  3. Journal of Biological Chemistry. 2002 277(29): 26486-26495.
  1. 19.   Direct and indirect contributions of RNA secondary structure elements to the initiation of HIV-1 reverse transcription
  2. Goldschmidt, V.; Rigourd, M.; Ehresmann, C.; Le Grice, S. F. J.; Ehresmann, B.; Marquet, R.
  3. Journal of Biological Chemistry. 2002 277(45): 43233-43242.
  1. 20.   Ty3 integrase is required for initiation of reverse transcription
  2. Nymark-McMahon, M. H.; Beliakova-Bethell, N. S.; Darlix, J. L.; Le Grice, S. F. J.; S, meyer
  3. Journal of Virology. 2002 76(6): 2804-2816.
  1. 21.   A novel interaction of tRNA(Lys,3) with the feline immunodeficiency virus RNA genome governs initiation of minus strand DNA synthesis
  2. Miller, J. T.; Ehresmann, B.; Hubscher, U.; Le Grice, S. F. J.
  3. Journal of Biological Chemistry. 2001 276(29): 27721-27730.
  1. 22.   The genomic RNA in Ty1 virus-like particles is dimeric
  2. Feng, Y. X.; Moore, S. P.; Garfinkel, D. J.; Rein, A.
  3. Journal of Virology. 2000 74(22): 10819-10821.
  1. 23.   Correct integration of model substrates by Ty1 integrase
  2. Moore, S. P.; Garfinkel, D. J.
  3. Journal of Virology. 2000 74(24): 11522-11530.
  1. 24.   The Saccharomyces cerevisiae DNA recombination and repair functions of the RAD52 epistasis group inhibit Tyl transposition
  2. Rattray, A. J.; Shafer, B. K.; Garfinkel, D. J.
  3. Genetics. 2000 154(2): 543-556.
  1. 25.   Simple method for detecting inhibitors of retroviral replication
  2. Garfinkel, D. J.; Nissley, D. V.; Curcio, J. M.; Strathern, J. N.
  3. 1998,US 5714313: 405.
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