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CD16 (3G8) Mouse mAb (PE Conjugate)



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CD16 (3G8) Mouse mAb (PE Conjugate)
交貨周期:現(xiàn)貨
500 μl 經(jīng)銷
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北京敏泰元科技有限公司
庫存:20

  • 產(chǎn)品詳情

應(yīng)用:F
CD64 (FcgammaRI), CD32 (FcgammaRII) and CD16 (FcgammaRIII) are three classes of the immunoglobulin superfamily. CD64 has a high affinity for IgG with three Ig-like domains while CD32 and CD16 have low affinities with two Ig-like domains. Two genes encode CD16-A and CD16-B resulting only in a 6 amino acid difference in their ectodomains. However, CD16-A has a transmembrane anchor versus CD16-B, which has a glycosylphosphatidylinositol (1). CD64, CD32 and CD16 are membrane glycoproteins that are expressed by all immunologically active cells and trigger various immune functions (activate B cells, phagocytosis, antibody-dependent cellular cytotoxicity, immune complex clearance and enhancement of antigen presentation) (2). CD16 cross-linking induces tyrosine phosphorylation (Tyr394) of Lck in NK cells (3). CD32 has tyrosine-based activation motifs in the cytoplasmic domain in contrast to CD16, which associates with molecules possessing these motifs (1).CD16A is expressed by NK cells, macrophages, and a subset of monocytes, while CD16B is expressed by neutrophils (4). CD16 is commonly used in combination with CD56 to characterize NK cells, with CD16 identifying NK cells capable of cytotoxicity (5).The 3G8 antibody is widely used as a marker of CD16 expression on the cell types mentioned above (6).

Supporting Data

REACTIVITY H
SENSITIVITY Endogenous
MW (kDa)
Source/Isotype Mouse IgG1 kappa

Application Key:

  • W-Western
  • IP-Immunoprecipitation
  • IHC-Immunohistochemistry
  • ChIP-Chromatin Immunoprecipitation
  • IF-Immunofluorescence
  • F-Flow Cytometry
  • E-P-ELISA-Peptide

Species Cross-Reactivity Key:

  • H-Human
  • M-Mouse
  • R-Rat
  • Hm-Hamster
  • Mk-Monkey
  • Vir-Virus
  • Mi-Mink
  • C-Chicken
  • Dm-D. melanogaster
  • X-Xenopus
  • Z-Zebrafish
  • B-Bovine
  • Dg-Dog
  • Pg-Pig
  • Sc-S. cerevisiae
  • Ce-C. elegans
  • Hr-Horse
  • All-All Species Expected

Product Usage Information

Application Dilution
Flow Cytometry 1:20

Storage

Supplied in 10 mM NaH2PO4, 150 mM NaCl, 0.09% NaN3, 0.1% gelatin, pH 7.2. Store at 4oC. Do not aliquot the antibody. Protect from light. Do not freeze.

Specificity / Sensitivity

CD16 (3G8) Mouse mAb (PE Conjugate) recognizes endogenous levels of total CD16 protein. This antibody detects an epitope within the extracellular domain.

Species Reactivity:

Human

Source / Purification

This monoclonal antibody was purified from tissue culture supernatant via affinity chromatography. The purified antibody was conjugated under optimal conditions, with unreacted dye removed from the preparation.

Background

CD64 (FcgammaRI), CD32 (FcgammaRII) and CD16 (FcgammaRIII) are three classes of the immunoglobulin superfamily. CD64 has a high affinity for IgG with three Ig-like domains while CD32 and CD16 have low affinities with two Ig-like domains. Two genes encode CD16-A and CD16-B resulting only in a 6 amino acid difference in their ectodomains. However, CD16-A has a transmembrane anchor versus CD16-B, which has a glycosylphosphatidylinositol (1). CD64, CD32 and CD16 are membrane glycoproteins that are expressed by all immunologically active cells and trigger various immune functions (activate B cells, phagocytosis, antibody-dependent cellular cytotoxicity, immune complex clearance and enhancement of antigen presentation) (2). CD16 cross-linking induces tyrosine phosphorylation (Tyr394) of Lck in NK cells (3). CD32 has tyrosine-based activation motifs in the cytoplasmic domain in contrast to CD16, which associates with molecules possessing these motifs (1).

CD16A is expressed by NK cells, macrophages, and a subset of monocytes, while CD16B is expressed by neutrophils (4). CD16 is commonly used in combination with CD56 to characterize NK cells, with CD16 identifying NK cells capable of cytotoxicity (5).

The 3G8 antibody is widely used as a marker of CD16 expression on the cell types mentioned above (6).

  1. Maenaka, K. et al. (2001) J. Biol. Chem. 276, 44898-44904.
  2. Fridman, W. H. et al. (1992) Immunol. Rev. 125, 49-76.
  3. Pignata, C. et al. (1993) J. Immunol. 151, 6794-6800.
  4. Pincetic, A. et al. (2014) Nat Immunol 15, 707-16.
  5. Nagler, A. et al. (1989) J Immunol 143, 3183-91.
  6. Fleit, H.B. et al. (1982) Proc Natl Acad Sci U S A 79, 3275-9.

友情鏈接 :  中國科學(xué)院 國科控股 喀斯瑪控股有限公司 中科海外人才創(chuàng)業(yè)園

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