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  1. 1.   Complete Rescue of HTLV-1p12KO Infectivity by Depletion of Monocytes Together with NK and CD8+ T Cells
  2. Gutowska, Anna; Sarkis, Sarkis; Rahman, Mohammad Arif; Goldfarbmuren,Kate; Moles, Ramona; Bissa, Massimiliano; Doster, Melvin; Washington-Parks, Robyn; McKinnon, Katherine; Silva de Castro, Isabela; Schifanella, Luca; Franchini, Genoveffa; Pise-Masison, Cynthia A
  3. Pathogens (Basel, Switzerland). 2024, Mar 29; 13(4):
  1. 2.   Essential Role of HTLV-1 orf-I in Lethal Proliferation of CD4+ Cells in Humanized Mice
  2. Galli, Veronica; Nixon, Christopher C; Strbo, Natasa; Artesi, Maria; de Castro-Amarante, Maria F; McKinnon, Katherine; Fujikawa, Dai; Omsland, Maria; Washington-Parks, Robyn; Romero, Laura; Caruso, Breanna; Durkin, Keith; Brown, Sophia; Karim,Baktiar; Vaccari, Monica; Jacobson, Steve; Zack, Jerome A; Van den Broeke, Anne; Pise-Masison, Cynthia; Franchini, Genoveffa
  3. Journal of virology. 2019, OCT; 93(19): pii: JVI.00565-19.
  1. 3.   Molecular Aspects of HTLV-1 Entry: Functional Domains of the HTLV-1 Surface Subunit (SU) and Their Relationships to the Entry Receptors
  2. Jones, K. S.; Lambert, S.; Bouttier, M.; Benit, L.; Ruscetti, F. W.; Hermine, O.; Pique, C.
  3. Viruses-Basel. 2011, Jun; 3(6): 794-810.
  1. 4.   The inner loop of tetraspanins CD82 and CD81 mediates interactions with human T cell lymphotrophic virus type 1 Gag protein
  2. Mazurov, D.; Heidecker, G.; Derse, D.
  3. Journal of Biological Chemistry. 2007, Feb; 282(6): 3896-3903.
  1. 5.   Development of a quantitative cell-based ELISA, for a humanized anti-IL-2/IL-15 receptor beta antibody (HuMik beta(1)), and correlation with functional activity using an antigen-transfected murine cell line
  2. Yang, X. Y.; Chen, E.; Jiang, H. G.; Hartmann, W. K.; Mitra, G.; Hecht, T.; Soman, G.
  3. Journal of Immunological Methods. 2006, APR 20; 311(1-2): 71-80.
  1. 6.   HTLV-1 Gag protein associates with CD82 tetraspanin microdomains at the plasma membrane
  2. Mazurov, D.; Heidecker, G.; Derse, D.
  3. Virology. 2006, MAR 1; 346(1): 194-204.
  1. 7.   Lessons learned fighting HIV can be applied to anti-cancer drug design
  2. Gustchina, A.; Jaskolski, M.; Wlodawer, A.
  3. Cell Cycle. 2006, MAR 1; 5(5): 463-464.
  1. 8.   Synthesis, processing, and composition of the virion-associated HTLV-1 reverse transcriptase
  2. Mitchell, M. S.; Tozser, J.; Princler, G.; Lloyd, P. A.; Auth, A.; Derse, D.
  3. Journal of Biological Chemistry. 2006, FEB 17; 281(7): 3964-3971.
  1. 9.   Molecular replacement with pseudosymmetry and model dissimilarity: a case study
  2. Jaskolski, M.; Li, M.; Laco, G.; Gustchina, A.; Wlodawer, A.
  3. Acta Crystallographica Section D-Biological Crystallography. 2006, FEB; 62(Part 2): 208-215.
  1. 10.   Heparan sulfate Proteoglycans mediate attachment and entry of human T-cell leukemia virus type 1 virions into CD4(+) T cells
  2. Jones, K. S.; Petrow-Sadowski, C.; Bertolette, D. C.; Huang, Y.; Ruscetti, F. W.
  3. Journal of Virology. 2005, OCT; 79(20): 12692-12702.
  1. 11.   Molecular mechanisms of Htlv-1 infection and replication
  2. Derse, D. D.; Heidecker, G.; Mazurov, D.; Mitchell, M.; Hill, S.; Lloyd, P. A.; Princler, G.
  3. Aids Research and Human Retroviruses. 2005, MAY; 21(5): 459, Abstract O67-459, Abstract O67.
  1. 12.   The role of ubiquitination in HTLV-1 budding
  2. Heidecker, G. H.; Lloyd, P.; Nagashima, K.; Derse, D.
  3. Aids Research and Human Retroviruses. 2005, MAY; 21(5): 503, Abstract P141-503, Abstract P141.
  1. 13.   Induction of human T cell leukemia virus type I receptors on quiescent naive T lymphocytes by TGF-beta(1,2)
  2. Jones, K. S.; Akel, S.; Petrow-Sadowski, C.; Huang, Y.; Bertolette, D. C.; Ruscetti, F. W.
  3. Journal of Immunology. 2005 174(7): 4262-4270.
  1. 14.   Infectious transmission and replication of human T-cell leukemia virus type 1
  2. Derse, D.; Heidecker, G.; Mitchell, M.; Hill, S.; Lloyd, P.; Princler, G.
  3. Frontiers in Bioscience. 2004, SEP 1; 9: 2495-2499.
  1. 15.   HTLV-1-encoded p30(II) is a post-transcriptional negative regulator of viral replication
  2. Nicot, C.; Dundr, M.; Johnson, J. M.; Fullen, J. R.; Alonzo, N.; Fukumoto, R.; Princler, G. L.; Derse, D.; Misteli, T.; Franchini, G.
  3. Nature Medicine. 2004 10(2): 197-201.
  1. 16.   Suppression of tumor growth and cell proliferation by p13(II), a mitochondrial protein of human T cell leukemia virus type 1
  2. Silic-Benussi, M.; Cavallari, L.; Zorzan, T.; Rossi, E.; Hiraragi, H.; Rosato, A.; Horie, K.; Saggioro, D.; Lairmore, M. D.; Willems, L.; Chieco-Bianchi, L.; D'Agostino, D. M.; Ciminale, V.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2004 101(17): 6629-6634.
  1. 17.   Late assembly motifs of human T-cell leukemia virus type 1 and their relative roles in particle release
  2. Heidecker, G.; Lloyd, P. A.; Fox, K.; Nagashima, K.; Derse, D.
  3. Journal of Virology. 2004 78(12): 6636-6648.
  1. 18.   Seroincidence of human T-lymphotropic virus type I infection and characterization of seroconverters in Jamaican food handlers
  2. Van Veldhuisen, P. C.; Walters, M.; Sawada, T.; Levine, P. H.; Wilks, R.; Hanchard, B.; Hisada, M.
  3. Jaids-Journal of Acquired Immune Deficiency Syndromes. 2003 33(3): 387-392.
  1. 19.   Roles of viral and cellular proteins in the expression of alternatively spliced HTLV-1 pX mRNAs
  2. Princler, G. L.; Julias, J. G.; Hughes, S. H.; Derse, D.
  3. Virology. 2003 317(1): 136-145.
  1. 20.   Comparison of the substrate specificity of the human T-cell leukemia virus and human immunodeficiency virus proteinases
  2. Tozser, J.; Zahuczky, G.; Bagossi, P.; Louis, J. M.; Copeland, T. D.; Oroszlan, S.; Harrison, R. W.; Weber, I. T.
  3. European Journal of Biochemistry. 2000 267(20): 6287-6295.
  1. 21.   Cloning of the bovine leukemia virus proteinase in Escherichia coli and comparison of its specificity to that of human T-cell leukemia virus proteinase
  2. Zahuczky, G.; Boross, P.; Bagossi, P.; Emri, G.; Copeland, T. D.; Oroszlan, S.; Louis, J. M.; Tozser, J.
  3. Biochimica et Biophysica Acta - Protein Structure & Molecular Enzymology. 2000 1478(1): 1-8.
  1. 22.   Thioredoxin, a redox enzyme released in infection and inflammation, is a unique chemoattractant for neutrophils, monocytes, and T cells
  2. Bertini, R.; Howard, O. M. Z.; Dong, H. F.; Oppenheim, J. J.; Bizzarri, C.; Sergi, R.; Caselli, G.; Pagliei, S.; Romines, B.; Wilshire, J. A.; Mengozzi, M.; Nakamura, H.; Yodoi, J.; Pekkari, K.; Gurunath, R.; Holmgren, A.; Herzenberg, L. A.; Ghezzi, P.
  3. Journal of Experimental Medicine. 1999 189(11): 1783-1789.
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