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Immunological Investigations
A Journal of Molecular and Cellular Immunology
Volume 36, 2007 - Issue 5-6
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Original

Chemical Labels Metabolically Installed Into the Glycoconjugates of the Target Cell Surface Can Be Used to Track Lymphocyte/Target Cell Interplay via Trogocytosis: Comparisons with Lipophilic Dyes and Biotin

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Pages 687-712 | Published online: 07 Jul 2009

REFERENCES

  • Barnden M., Allison J., Heath W., Carbone F. Defective TCR expression in transgenic mice constructed using cDNA-based alpha- and beta-chain genes under the control of heterologous regulatory elements. Immunol. Cell Biol. 1998; 76: 34–40
  • Batista F. D., Iber D., Neuberger M. S. B cells acquire antigen from target cells after synapse formation. Nature 2001; 411: 489–494
  • Beadling C., Slifka M. Quantifying viable virus-specific T cells without a priori knowledge of fine epitope specificity. Nat. Med. 2006; 12: 1208–1212
  • Campbell C. T., Sampathkumar S. G., Yarema K. J. Metabolic oligosaccharide engineering: perspectives, applications, and future directions. Mol. Biosyst. 2007; 3: 187–194
  • Carlin L., Eleme K., McCann F., Davis D. Intercellular transfer and supramolecular organization of human leukocyte antigen C at inhibitory human natural killer cell immune synapses. J. Exp. Med. 2001; 194: 1507–1517
  • Caumartin J., Lemaoult J., Carosella E. D. Intercellular exchanges of membrane patches (trogocytosis) highlight the next level of immune plasticity. Transpl. Immunol. 2006; 17: 20–22
  • Comelli E., Sutton-Smith M., Yan Q., Amado M., Panico M., Gilmartin T., Whisenant T., Lanigan C., Head S., Goldberg D., Morris H., Dell A., Paulson J. Activation of murine CD4+ and CD8+ T lymphocytes leads to dramatic remodeling of N-linked glycans. J. Immunol. 2006; 177: 2431–2440
  • Daniels M. A., Hogquist K., Jameson S. C. Sweet'n'sour: the impact of differential glycosylation on T cell responses. Nature Immunol. 2002; 3: 903–910
  • Daubeuf S., Puaux A., Joly E., Hudrisier D. A simple trogocytosis-based method to detect, quantify, characterize and purify antigen-specific live lymphocytes by flow cytometry, via their capture of membrane fragments from antigen-presenting cells. Nat. Prot. 2007; 1: 2536–2542
  • Davis D. M. Intercellular transfer of cell-surface proteins is common and can affect many stages of an immune response. Nat. Rev. Immunol. 2007; 7: 238–243
  • Dube D., Bertozzi C. Metabolic oligosaccharide engineering as a tool for glycobiology. Curr. Opin. Chem. Biol. 2003; 7: 616–625
  • Dube D., Prescher J., Quang C., Bertozzi C. Probing mucin-type O-linked glycosylation in living animals. Proc. Natl. Acad. Sci. USA 2006; 103: 4819–4824
  • Fayolle C., Ladant D., Karimova G., Ullmann A., Leclerc C. Therapy of murine tumors with recombinant Bordetella pertussi adenylate cyclase carrying a cytotoxic T cell epitope. J. Immunol. 1999; 162: 4157–4162
  • Fleire S. J., Goldman J. P., Carrasco Y. R., Weber M., Bray D., Batista F. D. B cell ligand discrimination through a spreading and contraction response. Science 2006; 312: 738–741
  • Galvan M., Murali-Krishna K., Ming L., Baum L., Ahmed R. Alterations in cell surface carbohydrates on T cells from virally infected mice can distinguish effector/memory CD8+ T cells from naive cells. J. Immunol. 1998; 161: 641–648
  • Goodnow C. C., Crosbie J., Adelstein S., Lavoie T. B., Smith-Gill S. J., Brink R. A., Pritchard-Briscoe H., Wotherspoon J. S., Loblay R. H., Raphael K., et al. Altered immunoglobulin expression and functional silencing of self-reactive B lymphocytes in transgenic mice. Nature 1988; 334: 676–682
  • Hakomori S. The glycosynapse. Proc. Natl. Acad. Sci. USA 2002; 99: 225–232
  • Han X., Bushweller J. H., Cafiso D. S., Tamm L. K. Membrane structure and fusion-triggering conformational change of the fusion domain from influenza hemagglutinin. Nat. Struct. Biol. 2001; 8: 715–720
  • Hogquist K. A., Jameson S. C., Heath W. R., Howard J. L., Bevan M. J., Carbone F. R. T-Cell receptor antagonist peptides induce positive selection. Cell 1994; 76: 17–27
  • Huang J. F., Yang Y., Sepulveda H., Shi W., Hwang I., Peterson P. A., Jackson M. R., Sprent J., Cai Z. TCR-mediated internalization of peptide-MHC complexes acquired by T cells. Science 1999; 286: 952–954
  • Hudrisier D., Aucher A., Puaux A. L., Bordier C., Joly E. Capture of target cell membrane components via trogocytosis is triggered by a selected set of surface molecules on T or B cells. J. Immunol. 2007; 178: 3637–3647
  • Hudrisier D., Bongrand P. Intercellular transfer of antigen-presenting cell determinants onto T cells: molecular mechanisms and biological significance. FASEB J 2002; 16: 477–486
  • Hudrisier D., Riond J., Garidou L., Duthoit C., Joly E. T Cell activation correlates with an increased proportion of antigen among the materials acquired from target cells. Eur. J. Immunol. 2005; 35: 2284–2294
  • Hudrisier D., Riond J., Mazarguil H., Gairin J. E., Joly E. Cutting edge: CTLs rapidly capture membrane fragments from target cells in a TCR signaling-dependent manner. J. Immunol. 2001; 166: 3645–3649
  • Hwang I., Huang J. F., Kishimoto H., Brunmark A., Peterson P. A., Jackson M. R., Surh C. D., Cai Z., Sprent J. T cells can use either T cell receptor or CD28 receptors to absorb and internalize cell surface molecules derived from antigen-presenting cells. J. Exp. Med. 2000; 191: 1137–1148
  • Iber D. Formation of the B cell synapse: retention or recruitment?. Cell. Mol. Life Sci. 2005; 62: 206–213
  • Jacobs C. L., Goon S., Yarema K. J., Hinderlich S., Hang H. C., Chai D. H., Bertozzi C. R. Substrate specificity of the sialic acid biosynthetic pathway. Biochemistry 2001; 40: 12864–12874
  • Joly E., Hudrisier D. What is trogocytosis and what is its purpose. Nat. Immunol. 2003; 4: 815
  • Kayser H., Geilen C. C., Paul C., Zeitler R., Reutter W. Incorporation of N-acyl-2-amino-2-deoxy-hexoses into glycosphingolipids of the pheochromocytoma cell line PC 12. FEBS Lett. 1992; 301: 137–140
  • Kedl R. M., Schaefer B. C., Kappler J. W., Marrack P. T cells down-modulate peptide-MHC complexes on APCs. in vivo. Nat. Immunol. 2002; 3: 27–32
  • Mahal L., Yarema K., Bertozzi C. Engineering chemical reactivity on cell surfaces through oligosaccharide biosynthesis. Science 1997; 276: 1125–1128
  • Murphy K. M., Heimberger A. B., Loh D. Y. Induction by antigen of intrathymic apoptosis of CD4+CD8+TCRlo thymocytes. in vivo. Science 1990; 250: 1720–1723
  • Pardigon N., Takeda K., Saunier B., Hornung F., Gibbs J., Weisberg A., Contractor N., Kelsall B., Bennink J., Yewdell J. CD8-mediated intraepithelial lymphocyte snatching of thymic leukemia MHC Class Ib molecules in vitro and in vivo. J. Immunol. 2006; 177: 1590–1598
  • Patel D. M., Arnold P. Y., White G. A., Nardella J. P., Mannie M. D. Class II MHC/peptide complexes are released from APC and are acquired by T cell responders during specific antigen recognition. J. Immunol. 1999; 163: 5201–5210
  • Pircher H., Michalopoulos E. E., Iwamoto A., Ohashi P. S., Baenziger J., Hengartner H., Zinkernagel R. M., Mak T. W. Molecular analysis of the antigen receptor of virus-specific cytotoxic T cells and identification of a new V alpha family. Eur. J. Immunol. 1987; 17: 1843–1846
  • Porgador A., Yewdell J. W., Deng Y., Bennink J. R., Germain R. N. Localization, quantitation, and in situ detection of specific peptide- MHC class I complexes using a monoclonal antibody. Immunity 1997; 6: 715–726
  • Poupot M., Fournié J. Spontaneaous membrane transfer through homotypic synapses between lymphoma cells. J. Immunol. 2003; 171: 2517–2523
  • Poupot M., Pont F., Fournie J. J. Profiling blood lymphocyte interactions with cancer cells uncovers the innate reactivity of human gamma delta T cells to anaplastic large cell lymphoma. J. Immunol. 2005; 174: 1717–1722
  • Prescher J., Bertozzi C. Chemistry in living systems. Nature Chem. Biol. 2005; 1: 13–21
  • Prescher J., Dube D., Bertozzi C. Chemical remodelling of cell surfaces in living cells. Nature 2004; 430: 873–877
  • Preville X., Ladant D., Timmerman B., Leclerc C. Eradication of established tumors by vaccination with recombinant Bordetella pertussis adenylate cyclase carrying the human papillomavirus 16 E7 oncoprotein. Cancer Res. 2005; 65: 641–649
  • Puaux A., Campanaud J., Salles A., Preville X., Timermann B., Joly E., Hudrisier D. A very rapid and simple assay based on trogocytosis to detect and measure specific T and B cells reactivity by flow cytometry. Eur. J. Immunol. 2006; 36: 779–788
  • Riond J., Elhmouzi F., Hudrisier D., Gairin J. Capture of membrane components via trogocytosis occurs in vivo during both dendritic cells and target cells encounter by CD8+ CTL. Scand. J. Immunol. 2007, in press
  • Rudd P., Wormald M. R., Stanfield R., Huang M., Mattsson N., Speir J. A., DiGennaro J., Fetrow J., Dwek R. A., Wilson I. Roles of glycosylation of cell surface receptors involved in cellular immune recognition. J. Mol. Biol. 1999; 293: 351–366
  • Rudd P. M., Elliott T., Cresswell P., Wilson I. A., Dwek R. A. Glycosylation and the immune system. Science 2001; 291: 2370–2376
  • Saxon E., Luchansky S. J., Hang H. C., Yu C., Lee S. C., Bertozzi C. R. Investigating cellular metabolism of synthetic azidosugars with the Staudinger ligation. J. Am. Chem. Soc. 2002; 124: 14893–14902
  • Sprent J. Swapping molecules during cell-cell interactions. Sci. STKE 2005; 273: 1–3
  • Stinchcombe J. C., Bossi G., Booth S., Griffiths G. M. The immunological synapse of CTL contains a secretory domain and membrane bridges. Immunity 2001; 15: 751–761
  • Tomaru U., Yamano Y., Nagai M., Maric D., Kaumaya P. T., Biddison W., Jacobson S. Detection of virus-specific T cells and CD8(+) T-cell epitopes by acquisition of peptide-HLA-GFP complexes: analysis of T-cell phenotype and function in chronic viral infections. Nat. Med. 2003; 9: 469–476
  • Vanherberghen B., Andersson K., Carlin L. M., Nolte-'t Hoen E. N., Williams G. S., Hoglund P., Davis D. M. Human and murine inhibitory natural killer cell receptors transfer from natural killer cells to target cells. Proc. Natl. Acad. Sci. USA 2004; 101: 16873–16878
  • Varki A. Glycan-based interactions involving vertebrate sialic-acid-recognizing proteins. Nature 2007; 446: 1023–1029
  • Wetzel S., McKeithan T., Parker D. Peptide-specific intercellular transfer of MHC Class II to CD4 T cells directly from the immunological synapse upon cellular dissociation. J. Immunol. 2005; 174: 80–89
  • Wetzel S., Parker D. MHC transfer from APC to T cells following antigen recognition. Crit. Rev. Immunol. 2006; 26: 1–21
  • Yarema K., Goon S., Bertozzi C. Metabolic selection of glycosylation defects in human cells. Nature Biotech. 2001; 19: 553–558
  • Yarema K., Mahal L., Bruhel R., Rodriguez E., Bertozzi C. Metabolic delivery of ketone groups to sialic acid residues. J. Biol. Chem. 1998; 273: 31168–31179
  • Yu Y. Y., Netuschil N., Lybarger L., Connolly J. M., Hansen T. H. Cutting edge: single-chain trimers of MHC class I molecules form stable structures that potently stimulate antigen-specific T cells and B cells. J. Immunol. 2002; 168: 3145–3149

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