Virus receptors: the Achilles' heel of human rhinoviruses.
暂无分享,去创建一个
[1] R. Colonno,et al. The major and minor group receptor families contain all but one human rhinovirus serotype. , 1991, Virology.
[2] Timothy A. Springer,et al. Adhesion receptors of the immune system , 1990, Nature.
[3] L. Osborn,et al. Leukocyte adhesion to endothelium in inflammation , 1990, Cell.
[4] R. Colvin,et al. In vivo effects of monoclonal antibody to ICAM-1 (CD54) in nonhuman primates with renal allografts. , 1990, Journal of immunology.
[5] J. Tomassini,et al. Antibodies that block rhinovirus attachment map to domain 1 of the major group receptor , 1990, Journal of virology.
[6] Michael Loran Dustin,et al. The arrangement of the immunoglobulin-like domains of ICAM-1 and the binding sites for LFA-1 and rhinovirus , 1990, Cell.
[7] D. Staunton,et al. A soluble form of intercellular adhesion molecule-1 inhibits rhinovirus infection , 1990, Nature.
[8] J. Condra,et al. Bacterial expression of antibody fragments that block human rhinovirus infection of cultured cells. , 1990, Journal of Biological Chemistry.
[9] R. Rothlein,et al. Intercellular adhesion molecule-1 (ICAM-1) in the pathogenesis of asthma. , 1990, Science.
[10] M. Brinton,et al. New Aspects of Positive-Strand Rna Viruses , 1990 .
[11] R. Naclerio,et al. Kinins are generated in nasal secretions during natural rhinovirus colds. , 1990, The Journal of infectious diseases.
[12] M S Chapman,et al. Modelling of the human intercellular adhesion molecule‐1, the human rhinovirus major group receptor , 1990, Proteins.
[13] J. Tomassini,et al. cDNA cloning reveals that the major group rhinovirus receptor on HeLa cells is intercellular adhesion molecule 1. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[14] Q. Sattentau,et al. Identification of the residues in human CD4 critical for the binding of HIV , 1989, Cell.
[15] A. Treasurywala,et al. Conformational change in the floor of the human rhinovirus canyon blocks adsorption to HeLa cell receptors , 1989, Journal of virology.
[16] R. Sweet,et al. Structural features of CD4 required for binding to HIV. , 1989, Journal of immunology.
[17] D. Tyrrell,et al. Suppression of colds in human volunteers challenged with rhinovirus by a new synthetic drug (R61837) , 1989, Antimicrobial Agents and Chemotherapy.
[18] E. Wimmer,et al. Cellular receptor for poliovirus: Molecular cloning, nucleotide sequence, and expression of a new member of the immunoglobulin superfamily , 1989, Cell.
[19] A. Mcclelland,et al. The major human rhinovirus receptor is ICAM-1 , 1989, Cell.
[20] D. Staunton,et al. A cell adhesion molecule, ICAM-1, is the major surface receptor for rhinoviruses , 1989, Cell.
[21] B. Semler,et al. Molecular Aspects of Picornavirus Infection and Detection , 1989 .
[22] J. Tomassini,et al. Biochemical characterization of a glycoprotein required for rhinovirus attachment. , 1989, The Journal of biological chemistry.
[23] J. Hsia,et al. Modulation of thymosin alpha 1 and thymosin beta 4 levels and peripheral blood mononuclear cell subsets during experimental rhinovirus colds. , 1989, Lymphokine research.
[24] Michael Loran Dustin,et al. Supergene families meet in the immune system. , 1988, Immunology today.
[25] E. Reinherz,et al. Substitution of murine for human CD4 residues identifies amino acids critical for HIV-gp120 binding , 1988, Nature.
[26] M. Murcko,et al. Evidence for the direct involvement of the rhinovirus canyon in receptor binding. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[27] Dan R. Littman,et al. The envelope glycoprotein of the human immunodeficiency virus binds to the immunoglobulin-like domain of CD4 , 1988, Nature.
[28] F. Hayden,et al. Modification of experimental rhinovirus colds by receptor blockade. , 1988, Antiviral research.
[29] B. Seed,et al. Genetic analysis of monoclonal antibody and HIV binding sites on the human lymphocyte antigen CD4 , 1988, Cell.
[30] R. Colonno,et al. Characterization of human rhinoviruses displaced by an anti-receptor monoclonal antibody , 1988, Journal of virology.
[31] L. Hood,et al. Location and chemical synthesis of a binding site for HIV-1 on the CD4 protein. , 1988, Science.
[32] M G Rossmann,et al. Structural analysis of a series of antiviral agents complexed with human rhinovirus 14. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[33] T. Springer,et al. Functional evidence that intercellular adhesion molecule‐1 (icam‐1) is a ligand for lfa‐1d‐ependent adhesion in t cell‐mediated cytotoxicity , 1988, European journal of immunology.
[34] Michael Loran Dustin,et al. Primary structure of ICAM-1 demonstrates interaction between members of the immunoglobulin and integrin supergene families , 1988, Cell.
[35] B. Seed,et al. ICAM, an adhesion ligand of LFA-1, is homologous to the neural cell adhesion molecule NCAM , 1988, Nature.
[36] R. Naclerio,et al. Kinins are generated during experimental rhinovirus colds. , 1988, The Journal of infectious diseases.
[37] W. S. Jordan,et al. A collaborative report: rhinoviruses--extension of the numbering system from 89 to 100. , 1987, Virology.
[38] A. Palmenberg. Picornaviral processing: Some new ideas , 1987, Journal of cellular biochemistry.
[39] J. Skehel,et al. The structure and function of the hemagglutinin membrane glycoprotein of influenza virus. , 1987, Annual review of biochemistry.
[40] Michael Loran Dustin,et al. The lymphocyte function-associated LFA-1, CD2, and LFA-3 molecules: cell adhesion receptors of the immune system. , 1987, Annual review of immunology.
[41] S. N. Gettner,et al. Unusual intron in the immunoglobulin domain of the newly isolated murine CD4 (L3T4) gene , 1987, Nature.
[42] R. Colonno. Cell surface receptors for picornaviruses , 1986, BioEssays : news and reviews in molecular, cellular and developmental biology.
[43] J. Tomassini,et al. Isolation of a receptor protein involved in attachment of human rhinoviruses , 1986, Journal of virology.
[44] R. Colonno,et al. Isolation of a monoclonal antibody that blocks attachment of the major group of human rhinoviruses , 1986, Journal of virology.
[45] S. Mizutani,et al. In vitro synthesis of an infectious RNA from cDNA clones of human rhinovirus type 14 , 1985, Journal of virology.
[46] John E. Johnson,et al. Structure of a human common cold virus and functional relationship to other picornaviruses , 1985, Nature.
[47] R. Colonno,et al. Many rhinovirus serotypes share the same cellular receptor , 1984, Journal of virology.
[48] R. Turner,et al. Sites of virus recovery and antigen detection in epithelial cells during experimental rhinovirus infection. , 1984, Acta oto-laryngologica. Supplementum.