Anti-CD209 nanobody [SAA1327] (STJN000302)

SKU:
STJN000302
$510.98 - $2,203.88
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Host: Alpaca
Applications: ELISA
Reactivity: Human
Note: STRICTLY FOR FURTHER SCIENTIFIC RESEARCH USE ONLY (RUO). MUST NOT BE USED IN DIAGNOSTIC OR THERAPEUTIC APPLICATIONS.
Short Description : Alpaca monoclonal nanobody anti-Cd209 antigen is suitable for use in ELISA research applications.
Clonality : Monoclonal
Clone ID : SAA1327
Conjugation: Unconjugated
Isotype: VHH-8His-Cys-tag
Formulation: 0.01M PBS, pH 7.4.
Purification: Purified by Nickel column.
Concentration: 1 mg/mL
Storage Instruction: Use a manual defrost freezer and avoid repeated freeze-thaw cycles. Store at 4°C short term (1-2 weeks). Store at-20°C 12 months. Store at-80°C long term.
Gene Symbol: CD209
Gene ID: 30835
Uniprot ID: CD209_HUMAN
Function Pathogen-recognition receptor expressed on the surface of immature dendritic cells (DCs) and involved in initiation of primary immune response. Thought to mediate the endocytosis of pathogens which are subsequently degraded in lysosomal compartments. The receptor returns to the cell membrane surface and the pathogen-derived antigens are presented to resting T-cells via MHC class II proteins to initiate the adaptive immune response. On DCs it is a high affinity receptor for ICAM2 and ICAM3 by binding to mannose-like carbohydrates. May act as a DC rolling receptor that mediates transendothelial migration of DC presursors from blood to tissues by binding endothelial ICAM2. Seems to regulate DC-induced T-cell proliferation by binding to ICAM3 on T-cells in the immunological synapse formed between DC and T-cells. (Microbial infection) Acts as an attachment receptor for HIV-1 and HIV-2. (Microbial infection) Acts as an attachment receptor for Ebolavirus. (Microbial infection) Acts as an attachment receptor for Cytomegalovirus. (Microbial infection) Acts as an attachment receptor for HCV. (Microbial infection) Acts as an attachment receptor for Dengue virus. (Microbial infection) Acts as an attachment receptor for Measles virus. (Microbial infection) Acts as an attachment receptor for Herpes simplex virus 1. (Microbial infection) Acts as an attachment receptor for Influenzavirus A. (Microbial infection) Acts as an attachment receptor for SARS-CoV. (Microbial infection) Acts as an attachment receptor for Japanese encephalitis virus. (Microbial infection) Acts as an attachment receptor for Lassa virus. Acts as an attachment receptor for Marburg virusn. (Microbial infection) Acts as an attachment receptor for Respiratory syncytial virus. (Microbial infection) Acts as an attachment receptor for Rift valley fever virus and uukuniemi virus. (Microbial infection) Acts as an attachment receptor for West-nile virus. (Microbial infection) Probably recognizes in a calcium-dependent manner high mannose N-linked oligosaccharides in a variety of bacterial pathogen antigens, including Leishmania pifanoi LPG, Lewis-x antigen in Helicobacter pylori LPS, mannose in Klebsiella pneumonae LPS, di-mannose and tri-mannose in Mycobacterium tuberculosis ManLAM and Lewis-x antigen in Schistosoma mansoni SEA. Recognition of M.tuberculosis by dendritic cells occurs partially via this molecule.
Protein Name Cd209 Antigen
C-Type Lectin Domain Family 4 Member L
Dendritic Cell-Specific Icam-3-Grabbing Non-Integrin 1
Dc-Sign
Dc-Sign1
Cd Antigen Cd209
Database Links Reactome: R-HSA-5621575
Reactome: R-HSA-8851680
Reactome: R-HSA-9833110
Cellular Localisation Isoform 1: Cell Membrane
Single-Pass Type Ii Membrane Protein
Isoform 2: Cell Membrane
Isoform 3: Cell Membrane
Isoform 4: Cell Membrane
Isoform 5: Cell Membrane
Isoform 6: Secreted
Isoform 7: Secreted
Isoform 8: Secreted
Isoform 9: Secreted
Isoform 10: Secreted
Isoform 11: Secreted
Isoform 12: Secreted
Alternative Nanobody Names Anti-Cd209 Antigen nanobody
Anti-C-Type Lectin Domain Family 4 Member L nanobody
Anti-Dendritic Cell-Specific Icam-3-Grabbing Non-Integrin 1 nanobody
Anti-Dc-Sign nanobody
Anti-Dc-Sign1 nanobody
Anti-Cd Antigen Cd209 nanobody
Anti-CD209 nanobody
Anti-CLEC4L nanobody

Information sourced from Uniprot.org