CD1b (T-Cell Surface Glycoprotein) Antibody - Without BSA and Azide
Mouse Monoclonal Antibody [Clone RIV12 ]
|Application ||IF, FC|
|Other Accession||910, 1310|
|Isotype||Mouse / IgG1, kappa|
|Other Names||T-cell surface glycoprotein CD1b, CD1b, CD1B|
|Format||200ug/ml of Ab purified from Bioreactor Concentrate by Protein A/G. Prepared in 10mM PBS with 0.05% BSA & 0.05% azide. Also available WITHOUT BSA & azide at 1.0mg/ml.|
|Storage||Store at 2 to 8°C.Antibody is stable for 24 months.|
|Precautions||CD1b (T-Cell Surface Glycoprotein) Antibody - Without BSA and Azide is for research use only and not for use in diagnostic or therapeutic procedures.|
|Function||Antigen-presenting protein that binds self and non-self lipid and glycolipid antigens and presents them to T-cell receptors on natural killer T-cells.|
|Cellular Location||Cell membrane; Single-pass type I membrane protein. Endosome membrane. Lysosome membrane. Note=Subject to intracellular trafficking between the cell membrane, endosomes and lysosomes. Localizes to cell surface lipid rafts|
|Tissue Location||Expressed on cortical thymocytes, on certain T-cell leukemias, and in various other tissues|
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Provided below are standard protocols that you may find useful for product applications.
The mouse monoclonal antibody recognizes CD1b, a 44kDa type I glycoprotein associated with beta2-microglobulin. It is expressed on dendritic cells, Langerhans cells, thymocytes, and T acute lymphoblastic leukemia cells. The CD1 multigene family encodes five forms of the CD1 T-cell surface glycoprotein in human, designated CD1A, 1B, 1C, 1D and 1E. CD1, a type 1 membrane protein, has structural similarity to the MHC class I antigen and has been shown to present lipid antigens for recognition by T lymphocytes. Constitutive endocytosis of CD1B molecules and the differential sorting of MHC class II from lysosomes separate peptide- and lipid antigen-presenting molecules during dendritic cell maturation. CD1B is also expressed in interdigitating cells.
Knapp W. et al. (eds) Leukocyte Typing IV, p251-263, Oxford University Press, Oxford, 1989 | Maher JK and Kronenberg M. The role of CD1 molecules in immune responses to infection. Curr Opin Immunol 1997, 9(4):456-461Blumberg RS et al. Structure and function of the CD1 family of MHC-like cell surface proteins. Immunol Rev 1995, 147:5-29. | Salamone MC et al. Analysis of CD1 molecules on haematological malignancies of myeloid and lymphoid origin. II. Intracellular detection of CD1 antigens. Dis Markers 1990, 8(5):275-281
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