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  1. 1.   Identification of Important N-Linked Glycosylation Sites in the Hemagglutinin Protein and Their Functional Impact on DC-SIGN Mediated Avian Influenza H5N1 Infection
  2. Yang, Zih-Syuan; Huang, Szu-Wei; Wang, Wen-Hung; Lin, Chih-Yen; Wang, Chu-Feng; Urbina, Aspiro Nayim; Thitithanyanont, Arunee; Tseng, Sung-Pin; Lu, Po-Liang; Chen, Yen-Hsu; Wang, Sheng-Fan
  3. International Journal of Molecular Sciences. 2021, Jan; 22(2):
  1. 2.   The lectins griffithsin, cyanovirin-N and scytovirin inhibit HIV-1 binding to the DC-SIGN receptor and transfer to CD4(+) cells
  2. Alexandre, K. B.; Gray, E. S.; Mufhandu, H.; McMahon, J. B.; Chakauya, E.; O'Keefe, B. R.; Chikwamba, R.; Morris, L.
  3. Virology. 2012, Feb; 423(2): 175-186.
  1. 3.   Complement Opsonization of HIV-1 Enhances the Uptake by Dendritic Cells and Involves the Endocytic Lectin and Integrin Receptor Families
  2. Tjomsl, V.; Ellegard, R.; Che, K.; Hinkula, J.; Lifson, J. D.; Larsson, M.
  3. Plos One. 2011, Aug; 6(8): 12.
  1. 4.   HIV-1 impairs in vitro priming of naive T cells and gives rise to contact-dependent suppressor T cells
  2. Che, K. F.; Sabado, R. L.; Shankar, E. M.; Tjomsl, V.; Messmer, D.; Bhardwaj, N.; Lifson, J. D.; Larsson, M.
  3. European Journal of Immunology. 2010, Aug; 40(8): 2248-2258.
  1. 5.   Quantitative Comparison of HTLV-1 and HIV-1 Cell-to-Cell Infection with New Replication Dependent Vectors
  2. Mazurov, D.; Ilinskaya, A.; Heidecker, G.; Lloyd, P.; Derse, D.
  3. Plos Pathogens. 2010, Feb; 6(2): 11.
  1. 6.   Fusion inhibitor prevents spread of immunodeficiency viruses, but not activation of virus-specific T cells, by dendritic cells
  2. Frank, I.; Stossel, H.; Gettie, A.; Turville, S. G.; Bess, J. W.; Lifson, J. D.; Sivin, I.; Romani, N.; Robbiani, M.
  3. Journal of Virology. 2008 82(11): 5329-5339.
  1. 7.   The evolutionary history of the CD209 (DC-SIGN) family in humans and non-human primates
  2. Ortiz, M.; Kaessmann, H.; Zhang, K.; Bashirova, A.; Carrington, M.; Quintana-Murci, L.; Telenti, A.
  3. Genes and Immunity. 2008 9(6): 483-492.
  1. 8.   Modulation of HIV and SIV neutralization sensitivity by DC-SIGN and mannose-binding lectin
  2. Marzi, A.; Mitchell, D. A.; Chaipan, C.; Fisch, T.; Doms, R. W.; Carrington, M.; Desrosiers, R. C.; Pohlmann, S.
  3. Virology. 2007, Nov; 368(2): 322-330.
  1. 9.   Pathways utilized by dendritic cells for binding, uptake, processing and presentation of antigens derived from HIV-1
  2. Sabado, R. L.; Babcock, E.; Kavanagh, D. G.; Tjomsl, V.; Walker, B. D.; Lifson, J. D.; Bhardwaj, N.; Larsson, M.
  3. European Journal of Immunology. 2007, Jul; 37(7): 1752-1763.
  1. 10.   DEC-205 receptor on dendritic cells mediates presentation of HIV gag protein to CD8(+) T cells in a spectrum of human MHC I haplotypes
  2. Bozzacco, L.; Trumpfheller, C.; Siegal, F. P.; Mehandru, S.; Markowitz, M.; Carrington, M.; Nussenzweig, M. C.; Piperno, A. G.; Steinman, R. M.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2007, Jan; 104(4): 1289-1294.
  1. 11.   Dendritic-cell interactions with HIV: infection and viral dissemination
  2. Wu, L.; KewalRamani, V. N.
  3. Nature Reviews Immunology. 2006, Nov; 6(11): 859-868.
  1. 12.   Conserved receptor-binding domains of Lake Victoria marburgvirus and Zaire ebolavirus bind a common receptor
  2. Kuhn, J. H.; Radoshitzky, S. R.; Guth, A. C.; Warfield, K. L.; Li, W. H.; Vincent, M. J.; Towner, J. S.; Nichol, S. T.; Bavari, S.; Choe, H.; Aman, M. J.; Farzan, M.
  3. Journal of Biological Chemistry. 2006, Jun; 281(23): 15951-15958.
  1. 13.   Repeat-region polymorphisms in the gene for the dendritic cell-specific intercellular adhesion molecule-3-grabbing nonintegrin related molecule: Effects on HIV-1 susceptibility
  2. Liu, H. L.; Carrington, M.; Wang, C. H.; Holte, S.; Lee, J.; Greene, B.; Hladik, F.; Koelle, D. M.; Wald, A.; Kurosawa, K.; Rinaldo, C. R.; Celum, C.; Detels, R.; Corey, L.; McElrath, M. J.; Zhu, T. F.
  3. Journal of Infectious Diseases. 2006, Mar; 193(5): 698-702.
  1. 14.   Role of DC-SIGN in the activation of dendritic cells by HPV-16 L1 virus-like particle vaccine
  2. Garcia-Pineres, A. J.; Hildesheim, A.; Trivett, M.; Williams, M.; Wu, L.; KewalRamani, V. N.; Pinto, L. A.
  3. European Journal of Immunology. 2006, Feb; 36(2): 437-445.
  1. 15.   Isolation and characterization of griffithsin, a novel HIV-inactivating protein, from the red alga Griffithsia sp
  2. Mori, T.; O'Keefe, B. R.; Sowder, R. C.; Bringans, S.; Gardella, R.; Berg, S.; Cochran, P.; Turpin, J. A.; Buckheit, R. W.; McMahon, J. B.; Boyd, M. R.
  3. Journal of Biological Chemistry. 2005, MAR 11; 280(10): 9345-9353.
  1. 16.   Association of DC-SIGN promoter polymorphism with increased risk for parenteral, but not mucosal, acquisition of human immunodeficiency virus type 1 infection
  2. Martin, M. P.; Lederman, M. M.; Hutcheson, H. B.; Goedert, J. J.; Nelson, G. W.; van Kooyk, Y.; Detels, R.; Buchbinder, S.; Hoots, K.; Vlahov, D.; O'Brien, S. J.; Carrington, M.
  3. Journal of Virology. 2004, DEC; 78(24): 14053-14056.
  1. 17.   Prevention of vaginal SHIV transmission in rhesus macaques through inhibition of CCR5
  2. Lederman, M. M.; Veazey, R. S.; Offord, R.; Mosier, D. E.; Dufour, J.; Mefford, M.; Piatak, M.; Lifson, J. D.; Salkowitz, J. R.; Rodriguez, B.; Blauvelt, A.; Hartley, O.
  3. Science. 2004, OCT 15; 306(5695): 485-487.
  1. 18.   Human immunodeficiency virus type 1 activates plasmacytoid dendritic cells and concomitantly induces the bystander maturation of myeloid dendritic cells
  2. Fonteneau, J. F.; Larsson, M.; Beignon, A. S.; McKenna, K.; Dasilva, I.; Amara, A.; Li, Y. J.; Lifson, J. D.; Littman, D. R.; Bhardwaj, N.
  3. Journal of Virology. 2004 78(10): 5223-5232.
  1. 19.   Immunodeficiency virus uptake, turnover, and 2-phase transfer in human dendritic cells
  2. Turville, S. G.; Santos, J. J.; Frank, I.; Cameron, P. U.; Wilkinson, J.; Miranda-Saksena, M.; Dable, J.; Stossel, H.; Romani, N.; Piatak, M.; Lifson, J. D.; Pope, M.; Cunningham, A. L.
  3. Blood. 2004 103(6): 2170-2179.
  1. 20.   Raji B cells, misidentified as THP-1 cells, stimulate DC-SIGN-mediated HIV transmission
  2. Wu, L.; Martin, T. D.; Carrington, M.; KewalRamani, V. N.
  3. Virology. 2004 318(1): 17-23.
  1. 21.   Use of a small molecule CCR5 inhibitor in macaques to treat simian immunodeficiency virus infection or prevent simian-human immunodeficiency virus infection
  2. Veazey, R. S.; Klasse, P. J.; Ketas, T. J.; Reeves, J. D.; Piatak, M.; Kunstman, K.; Kuhmann, S. E.; Marx, P. A.; Lifson, J. D.; Dufour, J.; Mefford, M.; Pandrea, I.; Wolinsky, S. M.; Doms, R. W.; DeMartino, J. A.; Siciliano, S. J.; Lyons, K.; Springer, M. S.; Moore, J. P.
  3. Journal of Experimental Medicine. 2003 198(10): 1551-1562.
  1. 22.   Recruitment of HIV and its receptors to dendritic cell-T cell junctions
  2. McDonald, D.; Wu, L.; Bohks, S. M.; KewalRamani, V. N.; Unutmaz, D.; Hope, T. J.
  3. Science. 2003 300(5623): 1295-1297.
  1. 23.   Dendritic cell-mediated viral transfer to T cells is required for human immunodeficiency virus type 1 persistence in the face of rapid cell turnover
  2. Gummuluru, S.; KewalRamani, V. N.; Emerman, M.
  3. Journal of Virology. 2002 76(21): 10692-10701.
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