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The CAMPATH-1 antigen (CDw52)
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Effects of CAMPATH-1 antibodies in vivo in patients with lymphoid malignancies: Influence of antibody isotype
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DYER M.J.S., HALE G., HAYHOE F.G.J. & WALDMANN H. (1988) Effects of CAMPATH-1 antibodies in vivo in patients with lymphoid malignancies: influence of antibody isotype. Blood 73, 1431.
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Humanised monoclonal antibody therapy or rheumatoid arthritis
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ISAACS J.D., WATTS R.A., HAZELMAN B.L. et al. (1992) Humanised monoclonal antibody therapy or rheumatoid arthritis. Lancet 340, 748.
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Characterisation of the CAMPATH-1 (CDw52) antigen: Biochemical analysis and cDNA cloning reveal an unusually small peptide backbone
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XIA M.-Q., TONE M., PACKMAN L., HALE G. & WALDMANN H. (1991) Characterisation of the CAMPATH-1 (CDw52) antigen: biochemical analysis and cDNA cloning reveal an unusually small peptide backbone. Eur J Immunol 21, 1677.
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Structure of the Campath-1H antigen, a glycosylphosphatidylinositol-anchored glycoprotein which is an exceptionally good target for complement lysis
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XIA M.-Q., HALE G., LIFELY M.R. et al. (1993) Structure of the Campath-1H antigen, a glycosylphosphatidylinositol-anchored glycoprotein which is an exceptionally good target for complement lysis. Biochem J 293, 633.
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Inhibitors of complement activation on the surface of cells after incorporation of decay-accelerating factor (DAF) into their membranes
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MEDOF M.E., KINOSHITA T. & NUSSENZWENG V. (1984) Inhibitors of complement activation on the surface of cells after incorporation of decay-accelerating factor (DAF) into their membranes. J Exp Med 160, 1558.
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CD59, an Ly-6 like protein expressed in human lymphoid cells regulates the action of the complement membrane attack complex on homologous cells
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DAVIES A., SIMMONS D.L., HALE G. et al. (1989) CD59, an Ly-6 like protein expressed in human lymphoid cells regulates the action of the complement membrane attack complex on homologous cells. J Exp Med 170, 637.
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Biosynthesis of glycosylphosphatidylinositol (GPI)-anchored membrane proteins in intact cells: Specific amino-acid requirements adjacent to the site of cleavage and GPI attachment
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KODUKULA K., GERBER L.D., AMTHAVER R., BRINK L. & UDENFRIEND S. (1993) Biosynthesis of glycosylphosphatidylinositol (GPI)-anchored membrane proteins in intact cells: specific amino-acid requirements adjacent to the site of cleavage and GPI attachment. J Cell Biol 120, 657.
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Fusion of sequence elements from non-anchored proteins to generate a fully functional signal for glycosylphosatidylinositol membrane anchor attachment
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A major mRNA of the human epididymal principal cell, HE5, encodes the leucocyte differentiation CDw52 antigen peptide backbone
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KIRCHHOFF C., KRULL N., PERA I. & IVELL R. (1993) A major mRNA of the human epididymal principal cell, HE5, encodes the leucocyte differentiation CDw52 antigen peptide backbone. Mol Reprod Dev 34, 8.
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CD58 and CD59 molecules exhibit potentialising effects in T cell adhesion and activation
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DECKERT M., KUBAR J. & BERNARD A. (1992) CD58 and CD59 molecules exhibit potentialising effects in T cell adhesion and activation. J Immunol 148, 672.
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Deckert, M.1
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Signal transduction through decay-accelerating factor: Interaction of glycosylphosphatidylinositol anchor and protein tyrosine kinases p56lck and p59fyn
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SHENOY-SCARIA M., KWONG J., FUJITO T., OLSZOWY M.W., SHAW A.S. & LUBLIN D.M. (1992) Signal transduction through decay-accelerating factor: interaction of glycosylphosphatidylinositol anchor and protein tyrosine kinases p56lck and p59fyn. J Immunol 149, 3535.
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