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Scavenger Receptor C-type Lectin Binds to the Leukocyte Cell Surface Glycan Lewisx by a Novel MechanismSegmented Helical Structure of the Neck Region of the Glycan-Binding Receptor DC-SIGNRTrimeric Structure of LangerinStructural Basis for Langerin Recognition of Diverse Pathogen and Mammalian Glycans through a Single Binding SiteMechanism for Recognition of an Unusual Mycobacterial Glycolipid by the Macrophage Receptor MincleCommon Polymorphisms in Human Langerin Change Specificity for Glycan LigandsPolymorphisms in human langerin affect stability and sugar binding activityA murine DC-SIGN homologue contributes to early host defense against Mycobacterium tuberculosisWidely divergent biochemical properties of the complete set of mouse DC-SIGN-related proteinsA novel mechanism for LSECtin binding to Ebola virus surface glycoprotein through truncated glycans.Glycoproteomic characterization of carriers of the CD15/Lewisx epitope on Hodgkin's Reed-Sternberg cells.Mouse LSECtin as a model for a human Ebola virus receptor.Identification of neutrophil granule glycoproteins as Lewis(x)-containing ligands cleared by the scavenger receptor C-type lectin.Two categories of mammalian galactose-binding receptors distinguished by glycan array profilingA Novel Mechanism for Binding of Galactose-terminated Glycans by the C-type Carbohydrate Recognition Domain in Blood Dendritic Cell Antigen 2.Lewis x antigen mediates adhesion of human breast carcinoma cells to activated endothelium. Possible involvement of the endothelial scavenger receptor C-type lectin.Organization of the extracellular portion of the macrophage galactose receptor: a trimeric cluster of simple binding sites for N-acetylgalactosamine.Paradigms for glycan-binding receptors in cell adhesion.Binding Sites for Acylated Trehalose Analogs of Glycolipid Ligands on an Extended Carbohydrate Recognition Domain of the Macrophage Receptor MincleConvergent and divergent mechanisms of sugar recognition across kingdoms.Structural basis for distinct ligand-binding and targeting properties of the receptors DC-SIGN and DC-SIGNR.The mannose receptor fails to enhance processing and presentation of a glycoprotein antigen in transfected fibroblasts.Uptake and processing of glycoproteins by isolated rat hepatic endothelial and Kupffer cells.Carbohydrate-binding proteins of human serum: isolation of two mannose/fucose-specific lectins.Mannose-binding proteins in human serum: identification of mannose-specific immunoglobulins and a calcium-dependent lectin, of broader carbohydrate specificity, secreted by hepatocytes.Oligolysine-based oligosaccharide clusters: selective recognition and endocytosis by the mannose receptor and dendritic cell-specific intercellular adhesion molecule 3 (ICAM-3)-grabbing nonintegrin.Characterization of carbohydrate recognition by langerin, a C-type lectin of Langerhans cells.Characterization of sugar binding by the mannose receptor family member, Endo180.Herpes simplex virus type 2 enhances HIV-1 susceptibility by affecting Langerhans cell function.Mutz-3-derived Langerhans cells are a model to study HIV-1 transmission and potential inhibitors.Collagen binding by the mannose receptor mediated through the fibronectin type II domain.Biology of animal lectins.The effects of diabetes and insulin on glycoprotein metabolism by rat liver.Multiple interactions between pituitary hormones and the mannose receptorGeometry and adhesion of extracellular domains of DC-SIGNR neck length variants analyzed by force-distance measurements.Identification of novel contributions to high-affinity glycoprotein-receptor interactions using engineered ligands.Defining the conformation of human mincle that interacts with mycobacterial trehalose dimycolate.Autonomous tetramerization domains in the glycan-binding receptors DC-SIGN and DC-SIGNR.An extended conformation of the macrophage mannose receptor.The C-type lectin superfamily in the immune system.
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description
academisch docent
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hulumtuese
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researcher
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հետազոտող
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Maureen E Taylor
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Maureen E Taylor
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Maureen E Taylor
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Maureen E Taylor
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Maureen E Taylor
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Maureen E Taylor
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Maureen E Taylor
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Maureen E Taylor
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Maureen E. Taylor
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Maureen E Taylor
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Maureen E Taylor
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Maureen E Taylor
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Maureen E Taylor
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