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Studies on the antigenic properties of egg-white lysozyme. I. Isolation and characterization of a tryptic peptide from reduced and alkylated lysozyme exhibiting haptenic activity.
Biochemistry. 1968 Nov;7(11):3888-92
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Molecular localization of the full profile of the continuous regions recognized by myoglobin-primed T-cells using synthetic overlapping peptides encompassing the entire molecule.
Immunol Commun. 1983;12(6):593-603
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Antibodies reactive with native lysozyme elicited by a completely synthetic antigen.
Proc Natl Acad Sci U S A. 1971 Jul;68(7):1450-5
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Conformation and immunochemistry of methylated and carboxymethyulated derivatives of lysozyme.
Biochemistry. 1973 Jul 3;12(14):2690-5
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Ir-LDHB: map position and functional analysis.
Eur J Immunol. 1973 Dec;3(12):754-61
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Genetic control of the immune response to staphylococcal nuclease. I. Ir-Nase: control of the antibody response to nuclease by the Ir region of the mouse H-2 complex.
J Exp Med. 1974 May 1;139(5):1204-14
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Cell-mediated and humoral immunity in mice: cross reaction between lysozyme and S-carboxymethylated lysozyme studied by a modified footpad test.
Jpn J Med Sci Biol. 1975 Feb;28(1):23-35
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Antigenic structure of myoglobin: the complete immunochemical anatomy of a protein and conclusions relating to antigenic structures of proteins.
Immunochemistry. 1975 May;12(5):423-38
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Delineation of the third antigenic site of lysozyme by application of a novel 'surface-simulation' synthetic approach directly linking the conformationally adjacent residues forming the site.
Biochem J. 1976 Oct 1;159(1):89-93
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Lymphocyte specificity to protein antigens. I. Characterization of the antigen-induced in vitro T cell-dependent proliferative response with lymph node cells from primed mice.
J Immunol. 1977 Sep;119(3):1048-53
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Enzymic and immunochemical properties of lysozyme. XIX. Definition of the direction and conformational restrictions of the antigenic site around the disulfide bonds 64-80 and 76-94 (site 2) by 'surface-simulation' synthesis.
Biochim Biophys Acta. 1977 Dec 20;495(2):354-68
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A mutation that impairs the ability of lipoprotein receptors to localise in coated pits on the cell surface of human fibroblasts.
Nature. 1977 Dec 22-29;270(5639):695-9
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Genetic control of the immune response to mammalian myoglobins in mice I. More than one I-region gene in H-2 controls the antibody response.
J Immunol. 1978 Feb;120(2):360-9
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Enzymic and immunochemical properties of lysozyme. Accurate definition of the antigenic site around the disulphide bridge 30-115 (site 3) by 'surface-simulation' synthesis.
Biochem J. 1977 Dec 1;167(3):571-81
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Boundary refinement of the lysozyme antigenic site around the disulphide bond 6-127 (site 1) by 'surface-simulation' synthesis.
Biochem J. 1978 May 1;171(2):419-27
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The precise and entire antigenic structure of native lysozyme.
Biochem J. 1978 May 1;171(2):429-34
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Genetic control of immune response to sperm whale myoglobin in mice. I. T lymphocyte proliferative response under H-2-linked Ir gene control.
J Immunol. 1978 Sep;121(3):866-8
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Recognition of lysozyme by lymphocyte subsets.
Adv Exp Med Biol. 1978;98:305-17
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A proposal for the nomenclature of antigenic sites in peptides and proteins.
Immunochemistry. 1978 Aug;15(8):609-10
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Preparation of T-lymphocyte lines and clones with specificities to preselected protein sites by in vitro passage with free synthetic peptides: demonstration with myoglobin sites.
Mol Immunol. 1983 Oct;20(10):1133-7
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Processing of lysozyme by macrophages: identification of the determinant recognized by two T-cell hybridomas.
Proc Natl Acad Sci U S A. 1984 Apr;81(8):2489-93
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Antigenic structures of proteins. Their determination has revealed important aspects of immune recognition and generated strategies for synthetic mimicking of protein binding sites.
Eur J Biochem. 1984 Nov 15;145(1):1-20
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T cell recognition of lysozyme. III. Recognition of the 'surface-simulation' synthetic antigenic sites.
J Immunogenet. 1984 Jun-Aug;11(3-4):245-50
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T cell recognition of lysozyme. IV. Localization and genetic control of the continuous T cell recognition sites by synthetic overlapping peptides representing the entire protein chain.
J Immunogenet. 1984 Oct-Dec;11(5-6):327-37
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T cell recognition of myoglobin. Localization of the sites stimulating T cell proliferative responses by synthetic overlapping peptides encompassing the entire molecule.
J Immunogenet. 1984 Oct-Dec;11(5-6):339-53
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The antigenic structure of proteins: a reappraisal.
Annu Rev Immunol. 1984;2:67-101
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T-cell recognition of lysozyme. I. Localization of regions stimulating T-cell proliferative response by synthetic overlapping peptides encompassing the entire molecule.
Exp Clin Immunogenet. 1984;1(2):99-111
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Precise determination of the entire antigenic structure of lysozyme: molecular features of protein antigenic structures and potential of "surface-simulation" synthesis--a powerful new concept for protein binding sites.
Immunochemistry. 1978 Dec;15(12):909-36
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Genetic control of immune response to sperm whale myoglobin in mice. II. T lymphocyte proliferative response to the synthetic antigenic sites.
J Immunol. 1979 Jul;123(1):182-8
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Determination of the entire antigenic structure of native lysozyme by surface-simulation synthesis, a novel concept in molecular recognition.
CRC Crit Rev Biochem. 1979;6(4):371-400
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Role of macrophages in the immune response.
Immunol Rev. 1978;40:1-255
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Genetic control of the immune response to hen's egg-white lysozyme in mice. I. Antibody and T-lymphocyte proliferative responses to the native protein.
J Immunogenet. 1979 Dec;6(6):447-52
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Evidence for reutilization of surface receptors for alpha-macroglobulin.protease complexes in rabbit alveolar macrophages.
Cell. 1980 Jan;19(1):197-205
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Studies on a mammalian hepatic binding protein specific for asialoglycoproteins. Evidence for receptor recycling in isolated rat hepatocytes.
J Biol Chem. 1980 Apr 10;255(7):3008-13
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Antibodies to a continuous region at residues 38-54 of hen egg white lysozyme found in a small fraction of anti-hen egg white lysozyme antibodies.
Biochemistry. 1980 May 27;19(11):2498-505
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Chloroquine inhibits lysosomal enzyme pinocytosis and enhances lysosomal enzyme secretion by impairing receptor recycling.
J Cell Biol. 1980 Jun;85(3):839-52
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Epitope specificity of the T cell proliferative response to lysozyme: proliferative T cells react predominantly to different determinants from those recognized by B cells.
Eur J Immunol. 1980 Jul;10(7):509-15
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Regulation of the immune response--role of the macrophage.
N Engl J Med. 1980 Nov 13;303(20):1153-6
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A novel and comprehensive synthetic approach for the elucidation of protein antigenic structures. Determination of the full antigenic profile of the alpha-chain of human haemoglobin.
Biochem J. 1980 Oct 1;191(1):261-4
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Monensin interrupts the recycling of low density lipoprotein receptors in human fibroblasts.
Cell. 1981 May;24(2):493-502
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Identification of a macrophage antigen-processing event required for I-region-restricted antigen presentation to T lymphocytes.
J Immunol. 1981 Nov;127(5):1869-75
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Genetic control of the immune response to haemoglobin. II. Studies using purified alpha-chain and beta-chain as immunogens.
J Immunogenet. 1981 Oct;8(5):395-403
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Immunochemical studies on lysozyme and carboxymethylated lysozyme.
Biochemistry. 1970 Jul 7;9(14):2755-62
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Decrease in macrophage antigen catabolism caused by ammonia and chloroquine is associated with inhibition of antigen presentation to T cells.
Proc Natl Acad Sci U S A. 1982 Jan;79(1):175-8
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Genetic control of the immune response to myoglobin. VI. Inter-site influences in T-lymphocyte proliferative response from analysis of cross-reactions of ten myoglobins in terms of substitutions in the antigenic sites and in environmental residues of the sites.
Mol Immunol. 1981 Oct;18(10):945-8
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Lymphocyte specificity to protein antigens. V. Conformational dependence of activation of cytochrome c-specific T cells.
Eur J Immunol. 1982 May;12(5):412-6
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Structurally inherent antigenic sites. Localization of the antigenic sites of the alpha-chain of human haemoglobin in three host species by a comprehensive synthetic approach.
Biochem J. 1982 Apr 1;203(1):201-8
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Weak bases and ionophores rapidly and reversibly raise the pH of endocytic vesicles in cultured mouse fibroblasts.
J Cell Biol. 1982 Nov;95(2 Pt 1):676-81
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Requirements for the processing of antigens by antigen-presenting B cells. I. Functional comparison of B cell tumors and macrophages.
J Immunol. 1982 Dec;129(6):2382-8
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Receptor-mediated endocytosis of insulin: role of microvilli, coated pits, and coated vesicles.
Proc Natl Acad Sci U S A. 1982 Dec;79(24):7788-91
PMID: 6818548
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Coated vesicles participate in the receptor-mediated endocytosis of insulin.
J Cell Biol. 1983 Jan;96(1):133-8
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Penetration of Semliki Forest virus from acidic prelysosomal vacuoles.
Cell. 1983 Mar;32(3):931-40
PMID: 6831562
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The role of intermediate vesicles in the adsorptive endocytosis and transport of ligand to lysosomes by human fibroblasts.
J Cell Biol. 1983 Mar;96(3):644-50
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Endocytosis of liposomes and intracellular fate of encapsulated molecules: encounter with a low pH compartment after internalization in coated vesicles.
Cell. 1983 Apr;32(4):1069-79
PMID: 6404557
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T-lymphocyte recognition of sperm-whale myoglobin. Responses of T-cells from mouse strains primed with synthetic peptide carrying antigenic site 5 and relation to antigen presentation.
J Immunogenet. 1983 Apr;10(2):151-60
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Antigen recognition by H-2-restricted T cells. I. Cell-free antigen processing.
J Exp Med. 1983 Aug 1;158(2):303-16
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The handling of Listeria monocytogenes by macrophages: the search for an immunogenic molecule in antigen presentation.
J Immunol. 1984 Jan;132(1):323-31
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Differential requirements for antigen processing by macrophages for lysozyme-specific T cell hybridomas.
J Immunol. 1984 Mar;132(3):1077-9
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The regulatory role of macrophages in antigenic stimulation. Part Two: symbiotic relationship between lymphocytes and macrophages.
Adv Immunol. 1981;31:1-136
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