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CD8 Antibody (4B11)

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Orthogonal Strategies: Dual RNAscope ISH-IHC: CD8 Antibody (4B11) [NB100-65729] - Formalin-fixed paraffin-embedded tissue sections of human tonsil were probed for CD8 mRNA (ACD RNAScope probe, catalog # 560391; ...read more
Immunohistochemistry-Paraffin: CD8 Antibody (4B11) [NB100-65729] - Analysis of formalin fixed, paraffin-embedded human tonsil with CD8 Antibody (4B11). Magnification: 40X.

Product Details

Summary
Reactivity HuSpecies Glossary
Applications IHC, Dual ISH-IHC
Clone
4B11
Clonality
Monoclonal
Host
Mouse
Conjugate
Unconjugated
Validated by:
       

Orthogonal Strategies

 

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CD8 Antibody (4B11) Summary

Immunogen
Synthetic peptide derived from the carboxy terminal region of the human CD8 alpha chain coupled to a N-terminal cysteine, with the sequence C-KSDGKPSLSARYV. The peptide was coupled to bovine serum albumin and keyhole limpet hemocyanin
Specificity
CD8 Antibody (4B11) recognizes the human CD8 cell surface antigen, a 32kD glycoprotein expressed by the cytotoxic/suppressor subset of T-cells and weakly by NK cells. Clone 4B11 has been reported as being suitable for use in Western blotting.
Isotype
IgG2b
Clonality
Monoclonal
Host
Mouse
Gene
CD8A
Purity
Tissue culture supernatant
Innovator's Reward
Test in a species/application not listed above to receive a full credit towards a future purchase.

Applications/Dilutions

Dilutions
  • Dual RNAscope ISH-IHC
  • Immunohistochemistry 1:10-1:500
  • Immunohistochemistry-Frozen 1:20-1:40
  • Immunohistochemistry-Paraffin 1:20-1:40
Application Notes
This product requires antigen retrieval using heat treatment prior to staining of paraffin sections. 1mM EDTA pH8.0 is recommended for this purpose. Use in Immunocytochemistry/Immunofluorescence reported in scientific literature (PMID:32184726).
Theoretical MW
26 kDa.
Disclaimer note: The observed molecular weight of the protein may vary from the listed predicted molecular weight due to post translational modifications, post translation cleavages, relative charges, and other experimental factors.
Control
CD8 Overexpression Lysate
Publications
Read Publications using
NB100-65729 in the following applications:

  • IF
    1 publication
  • 3 publications

Packaging, Storage & Formulations

Storage
Store at 4C. Do not freeze.
Buffer
Tissue culture supernatant
Preservative
0.01% Sodium Azide
Purity
Tissue culture supernatant

Alternate Names for CD8 Antibody (4B11)

  • CD_antigen: CD8a
  • CD8 antigen, alpha polypeptide (p32)
  • CD8
  • CD8a molecule
  • CD8A
  • Leu2 T-lymphocyte antigen
  • LEU2
  • MAL
  • OKT8 T-cell antigen
  • p32
  • T cell co-receptor
  • T8 T-cell antigen
  • T-cell antigen Leu2
  • T-cell surface glycoprotein CD8 alpha chain
  • T-lymphocyte differentiation antigen T8/Leu-2

Background

CD8, also known as Leu-2 or T8 in human and Lyt2 or Lyt3 in mouse, is a cell surface glycoprotein belonging to the immunoglobulin supergene family (1, 2). CD8 is expressed on cytotoxic T-lymphocytes (T-cells), most thymocytes, between 35-45% of peripheral blood lymphocytes, and a population of natural killer (NK) cells (1, 2). The CD8 molecule consists of disulfide-linked alpha (alpha) and beta (beta) chains that present on T-cells as either CD8alphaalpha homodimers or CD8alphabeta heterodimers (1, 3). Both alpha and beta chains consist of a signaling sequence, an extracellular Ig-like domain, a membrane proximal stalk region, a transmembrane domain, and a cytoplasmic tail (3). Human CD8alpha is processed as 235 amino acids (aa) in length with a theoretical molecular weight of ~26 kDa, while mouse CD8alpha is 247 aa and has a theoretical molecular weight of 27.5 kDa (4, 5). Functionally, CD8 acts as an antigen coreceptor on cytotoxic T-cells and interacts with the major histocompatibility complex (MHC) class I molecules on antigen presenting cells (APCs), mediating cell-cell interactions within the immune system. Conversely, CD4 molecules interact with antigens presented on MHC class II molecules and are activated to become helper T-cells (TH) (1,2). Interestingly, thymocytes can transiently express both CD4 and CD8 during the maturation process (2). Furthermore, the cytoplasmic tail of CD8 has a Lck (lymphocyte-specific protein tyrosine kinase) binding domain where Lck interacts with CD8, initiating a phosphorylation cascade that activates transcription factors and promotes T-cell activation (6). More specifically, CD8alphabeta functions as a T-cell co-receptor, while CD8alphaalpha promotes T-cell survival and differentiation (7).

Given its role in the immune system, CD8-deficiency in T-cells is a hallmark of many diseases and pathologies (8-10). Specifically, CD8+ T-cell deficiency is prevalent in chronic autoimmune diseases including multiple sclerosis, rheumatoid arthritis, ulcerative colitis, Crohn's disease, type 1 diabetes mellitus, and Graves' disease (8). Furthermore, cancers or chronic infection can lead to CD8 T-cell exhaustion as the continual antigen presentation and inflammatory signals eventually cause the CD8+ T-cells to lose functionality (9, 10). However, animal models and clinical studies have suggested that T-cells are capable of being reinvigorated using inhibitory receptor blockade resulting in better disease outcomes and these exhausted T-cells may be a potential therapeutic target (9, 10).

Alternative names for CD8 includes CD antigen: CD8a, CD8 antigen, alpha polypeptide (p32), CD8a molecule, CD8A, Leu2 T-lymphocyte antigen, LEU2, MAL, OKT8 T-cell antigen, p32, T cell co-receptor, T8 T-cell antigen, T-cell antigen Leu2, T-cell surface glycoprotein CD8 alpha chain, and T-lymphocyte differentiation antigen T8/Leu-2.

References

1. Littman D. R. (1987). The structure of the CD4 and CD8 genes. Annual review of immunology. https://doi.org/10.1146/annurev.iy.05.040187.003021

2. Naeim F. (2008). Chapter 2- Principles of Immunophenotyping. Hematopathology. https://doi.org/10.1016/B978-0-12-370607-2.00002-8.

3. Gao, G. F., & Jakobsen, B. K. (2000). Molecular interactions of coreceptor CD8 and MHC class I: the molecular basis for functional coordination with the T-cell receptor. Immunology today. https://doi.org/10.1016/s0167-5699(00)01750-3

4. UniProt (P01732)

5. UniProt (P01731)

6. Kappes D. J. (2007). CD4 and CD8: hogging all the Lck. Immunity. https://doi.org/10.1016/j.immuni.2007.11.002

7. Gangadharan, D., & Cheroutre, H. (2004). The CD8 isoform CD8alphaalpha is not a functional homologue of the TCR co-receptor CD8alphabeta. Current opinion in immunology. https://doi.org/10.1016/j.coi.2004.03.015

8. Pender M. P. (2012). CD8+ T-Cell Deficiency, Epstein-Barr Virus Infection, Vitamin D Deficiency, and Steps to Autoimmunity: A Unifying Hypothesis. Autoimmune diseases. https://doi.org/10.1155/2012/189096

9. Kurachi M. (2019). CD8+ T cell exhaustion. Seminars in immunopathology. https://doi.org/10.1007/s00281-019-00744-5

10. Hashimoto, M., Kamphorst, A. O., Im, S. J., Kissick, H. T., Pillai, R. N., Ramalingam, S. S., Araki, K., & Ahmed, R. (2018). CD8 T Cell Exhaustion in Chronic Infection and Cancer: Opportunities for Interventions. Annual review of medicine. https://doi.org/10.1146/annurev-med-012017-043208

Limitations

This product is for research use only and is not approved for use in humans or in clinical diagnosis. Primary Antibodies are guaranteed for 1 year from date of receipt.

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Publications for CD8 Antibody (NB100-65729)(5)

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Product General Protocols

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FAQs for CD8 Antibody (NB100-65729). (Showing 1 - 1 of 1 FAQs).

  1. What aa sequence of CD8 was used to generate this monoclonal? I am looking for cross-reactive antibodies to another species and this information would be useful.
    • For NB100-65729 the immunogen is CKSGDKPSLSARYV.

Control Lysate(s)

Secondary Antibodies

 

Isotype Controls

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Bioinformatics

Gene Symbol CD8A
Entrez
Uniprot