product summary
Loading...
company name :
Invitrogen
other brands :
NeoMarkers, Lab Vision, Endogen, Pierce, BioSource International, Zymed Laboratories, Caltag, Molecular Probes, Research Genetics, Life Technologies, Applied Biosystems, GIBCO BRL, ABgene, Dynal, Affinity BioReagents, Nunc, Invitrogen, NatuTec, Oxoid, Richard-Allan Scientific, Arcturus, Perseptive Biosystems, Proxeon, eBioscience
product type :
antibody
product name :
CD3 Monoclonal Antibody (7D6)
catalog :
MHCD0300
quantity :
0.5 mL
price :
US 155.00
clonality :
monoclonal
host :
mouse
conjugate :
nonconjugated
clone name :
7D6
reactivity :
African green monkey, human, mouse
application :
western blot, immunocytochemistry, immunoprecipitation, flow cytometry, immunohistochemistry - frozen section, blocking or activating experiments, other
more info or order :
citations: 72
Published Application/Species/Sample/DilutionReference
  • flow cytometry; human; loading ...; fig 7j
Beziat V, Tavernier S, Chen Y, Ma C, Materna M, Laurence A, et al. Dominant-negative mutations in human IL6ST underlie hyper-IgE syndrome. J Exp Med. 2020;217: pubmed publisher
  • flow cytometry; human; loading ...
Demers K, Makedonas G, Buggert M, Eller M, Ratcliffe S, Goonetilleke N, et al. Temporal Dynamics of CD8+ T Cell Effector Responses during Primary HIV Infection. PLoS Pathog. 2016;12:e1005805 pubmed publisher
  • flow cytometry; human; fig 2
Domingues R, de Carvalho G, Aoki V, da Silva Duarte A, Sato M. Activation of myeloid dendritic cells, effector cells and regulatory T cells in lichen planus. J Transl Med. 2016;14:171 pubmed publisher
  • flow cytometry; human; fig 4
Marshall M, Pattu V, Halimani M, Maier Peuschel M, Müller M, Becherer U, et al. VAMP8-dependent fusion of recycling endosomes with the plasma membrane facilitates T lymphocyte cytotoxicity. J Cell Biol. 2015;210:135-51 pubmed publisher
  • flow cytometry; human
Laing K, Russell R, Dong L, Schmid D, Stern M, Magaret A, et al. Zoster Vaccination Increases the Breadth of CD4+ T Cells Responsive to Varicella Zoster Virus. J Infect Dis. 2015;212:1022-31 pubmed publisher
  • flow cytometry; human; tbl s1
Claiborne D, Prince J, Scully E, Macharia G, Micci L, Lawson B, et al. Replicative fitness of transmitted HIV-1 drives acute immune activation, proviral load in memory CD4+ T cells, and disease progression. Proc Natl Acad Sci U S A. 2015;112:E1480-9 pubmed publisher
  • flow cytometry; human
Peguillet I, Milder M, Louis D, Vincent Salomon A, Dorval T, Piperno Neumann S, et al. High numbers of differentiated effector CD4 T cells are found in patients with cancer and correlate with clinical response after neoadjuvant therapy of breast cancer. Cancer Res. 2014;74:2204-16 pubmed publisher
  • blocking or activating experiments; human
  • western blot; human; fig 5
Saghafian Hedengren S, Sohlberg E, Theorell J, Carvalho Queiroz C, Nagy N, Persson J, et al. Epstein-Barr virus coinfection in children boosts cytomegalovirus-induced differentiation of natural killer cells. J Virol. 2013;87:13446-55 pubmed publisher
  • flow cytometry; human
Kvarnung M, Nilsson D, Lindstrand A, Korenke G, Chiang S, Blennow E, et al. A novel intellectual disability syndrome caused by GPI anchor deficiency due to homozygous mutations in PIGT. J Med Genet. 2013;50:521-8 pubmed publisher
  • flow cytometry; human; fig 3
Palin A, Ramachandran V, Acharya S, Lewis D. Human neonatal naive CD4+ T cells have enhanced activation-dependent signaling regulated by the microRNA miR-181a. J Immunol. 2013;190:2682-91 pubmed publisher
  • flow cytometry; human; fig 4
Yan R, Zhong W, Zhu Y, Zhang X. Trichosanthin-stimulated dendritic cells induce a type 2 helper T lymphocyte response through the OX40 ligand. J Investig Allergol Clin Immunol. 2012;22:491-500 pubmed
  • flow cytometry; human
Muñoz Ruiz M, Pérez Flores V, Garcillán B, Guardo A, Mazariegos M, Takada H, et al. Human CD3?, but not CD3?, haploinsufficiency differentially impairs ?? versus ?? surface TCR expression. BMC Immunol. 2013;14:3 pubmed publisher
  • flow cytometry; human; fig 1
Wong W, Sigvardsson M, Astrand Grundström I, Hogge D, Larsson J, Qian H, et al. Expression of integrin ?2 receptor in human cord blood CD34+CD38-CD90+ stem cells engrafting long-term in NOD/SCID-IL2R?(c) null mice. Stem Cells. 2013;31:360-71 pubmed publisher
  • flow cytometry; human; fig 5
Gall A, Horowitz A, Joof H, Natividad A, Tetteh K, Riley E, et al. Systemic effector and regulatory immune responses to chlamydial antigens in trachomatous trichiasis. Front Microbiol. 2011;2:10 pubmed publisher
  • flow cytometry; human; fig 1
Horowitz A, Behrens R, Okell L, Fooks A, Riley E. NK cells as effectors of acquired immune responses: effector CD4+ T cell-dependent activation of NK cells following vaccination. J Immunol. 2010;185:2808-18 pubmed publisher
  • other; human; fig 2
Zhou J, Belov L, Huang P, Shin J, Solomon M, Chapuis P, et al. Surface antigen profiling of colorectal cancer using antibody microarrays with fluorescence multiplexing. J Immunol Methods. 2010;355:40-51 pubmed publisher
  • flow cytometry; human
Hunter P, Nistala K, Jina N, Eddaoudi A, Thomson W, Hubank M, et al. Biologic predictors of extension of oligoarticular juvenile idiopathic arthritis as determined from synovial fluid cellular composition and gene expression. Arthritis Rheum. 2010;62:896-907 pubmed publisher
  • flow cytometry; human; fig 1
Marino J, Tan C, Taylor A, Bentley C, Van De Wiele C, Ranne R, et al. Differential IL-7 responses in developing human thymocytes. Hum Immunol. 2010;71:329-33 pubmed publisher
  • flow cytometry; human
Park C, Majeti R, Weissman I. In vivo evaluation of human hematopoiesis through xenotransplantation of purified hematopoietic stem cells from umbilical cord blood. Nat Protoc. 2008;3:1932-40 pubmed publisher
  • flow cytometry; human
Sodsai P, Hirankarn N, Avihingsanon Y, Palaga T. Defects in Notch1 upregulation upon activation of T Cells from patients with systemic lupus erythematosus are related to lupus disease activity. Lupus. 2008;17:645-53 pubmed publisher
  • flow cytometry; human; fig 2
Lunemann J, Frey O, Eidner T, Baier M, Roberts S, Sashihara J, et al. Increased frequency of EBV-specific effector memory CD8+ T cells correlates with higher viral load in rheumatoid arthritis. J Immunol. 2008;181:991-1000 pubmed
  • flow cytometry; human
Giannelli S, Taddeo A, Presicce P, Villa M, Della Bella S. A six-color flow cytometric assay for the analysis of peripheral blood dendritic cells. Cytometry B Clin Cytom. 2008;74:349-55 pubmed publisher
  • flow cytometry; human
Gurer C, Strowig T, Brilot F, Pack M, Trumpfheller C, Arrey F, et al. Targeting the nuclear antigen 1 of Epstein-Barr virus to the human endocytic receptor DEC-205 stimulates protective T-cell responses. Blood. 2008;112:1231-9 pubmed publisher
  • flow cytometry; human; loading ...; fig 2a
Grahmann P, Braun R. A new protocol for multiple inhalation of IFN-gamma successfully treats MDR-TB: a case study. Int J Tuberc Lung Dis. 2008;12:636-44 pubmed
  • blocking or activating experiments; human
Muniz J, McCauley L, Scherer J, Lasarev M, Koshy M, Kow Y, et al. Biomarkers of oxidative stress and DNA damage in agricultural workers: a pilot study. Toxicol Appl Pharmacol. 2008;227:97-107 pubmed
  • blocking or activating experiments; human; 100 ng/ml; fig 3c
Sangiolo D, Lesnikova M, Nash R, Jensen M, Nikitine A, Kiem H, et al. Lentiviral vector conferring resistance to mycophenolate mofetil and sensitivity to ganciclovir for in vivo T-cell selection. Gene Ther. 2007;14:1549-54 pubmed
  • flow cytometry; human; fig 3
Estefanía E, Flores R, Gómez Lozano N, Aguilar H, Lopez Botet M, Vilches C. Human KIR2DL5 is an inhibitory receptor expressed on the surface of NK and T lymphocyte subsets. J Immunol. 2007;178:4402-10 pubmed
  • flow cytometry; human
Diaz Blanco E, Bruns I, Neumann F, Fischer J, Graef T, Rosskopf M, et al. Molecular signature of CD34(+) hematopoietic stem and progenitor cells of patients with CML in chronic phase. Leukemia. 2007;21:494-504 pubmed
  • flow cytometry; human
De Fanis U, Mori F, Kurnat R, Lee W, Bova M, Adkinson N, et al. GATA3 up-regulation associated with surface expression of CD294/CRTH2: a unique feature of human Th cells. Blood. 2007;109:4343-50 pubmed
  • flow cytometry; human
Jamieson C, Gotlib J, Durocher J, Chao M, Mariappan M, Lay M, et al. The JAK2 V617F mutation occurs in hematopoietic stem cells in polycythemia vera and predisposes toward erythroid differentiation. Proc Natl Acad Sci U S A. 2006;103:6224-9 pubmed
  • flow cytometry; human
Barsov E, Andersen H, Coalter V, Carrington M, Lifson J, Ott D. Capture of antigen-specific T lymphocytes from human blood by selective immortalization to establish long-term T-cell lines maintaining primary cell characteristics. Immunol Lett. 2006;105:26-37 pubmed
  • flow cytometry; human; fig s1
Olivier A, Lauret E, Gonin P, Galy A. The Notch ligand delta-1 is a hematopoietic development cofactor for plasmacytoid dendritic cells. Blood. 2006;107:2694-701 pubmed
  • flow cytometry; human
Schaap A, Fortin J, Sommer M, Zerboni L, Stamatis S, Ku C, et al. T-cell tropism and the role of ORF66 protein in pathogenesis of varicella-zoster virus infection. J Virol. 2005;79:12921-33 pubmed
  • flow cytometry; human; tbl 2
Bratke K, Kuepper M, Bade B, Virchow J, Luttmann W. Differential expression of human granzymes A, B, and K in natural killer cells and during CD8+ T cell differentiation in peripheral blood. Eur J Immunol. 2005;35:2608-16 pubmed
  • flow cytometry; human
Tas S, Quartier P, Botto M, Fossati Jimack L. Macrophages from patients with SLE and rheumatoid arthritis have defective adhesion in vitro, while only SLE macrophages have impaired uptake of apoptotic cells. Ann Rheum Dis. 2006;65:216-21 pubmed
  • flow cytometry; human
Yamada H, Shimada S, Morikawa M, Iwabuchi K, Kishi R, Onoe K, et al. Divergence of natural killer cell receptor and related molecule in the decidua from sporadic miscarriage with normal chromosome karyotype. Mol Hum Reprod. 2005;11:451-7 pubmed
  • flow cytometry; human
Mittag A, Lenz D, Gerstner A, Sack U, Steinbrecher M, Koksch M, et al. Polychromatic (eight-color) slide-based cytometry for the phenotyping of leukocyte, NK, and NKT subsets. Cytometry A. 2005;65:103-15 pubmed
  • flow cytometry; African green monkey; fig 1
Contamin H, Loizon S, Bourreau E, Michel J, Garraud O, Mercereau Puijalon O, et al. Flow cytometry identification and characterization of mononuclear cell subsets in the neotropical primate Saimiri sciureus (squirrel monkey). J Immunol Methods. 2005;297:61-71 pubmed
  • flow cytometry; human; fig 2
Canonico B, Zamai L, Burattini S, Granger V, Mannello F, Gobbi P, et al. Evaluation of leukocyte stabilisation in TransFix-treated blood samples by flow cytometry and transmission electron microscopy. J Immunol Methods. 2004;295:67-78 pubmed
  • flow cytometry; human; fig 3
Pfistershammer K, Majdic O, Stockl J, Zlabinger G, Kirchberger S, Steinberger P, et al. CD63 as an activation-linked T cell costimulatory element. J Immunol. 2004;173:6000-8 pubmed
  • flow cytometry; human
Ku C, Zerboni L, Ito H, Graham B, Wallace M, Arvin A. Varicella-zoster virus transfer to skin by T Cells and modulation of viral replication by epidermal cell interferon-alpha. J Exp Med. 2004;200:917-25 pubmed
  • flow cytometry; human
Bonanno G, Perillo A, Rutella S, De Ritis D, Mariotti A, Marone M, et al. Clinical isolation and functional characterization of cord blood CD133+ hematopoietic progenitor cells. Transfusion. 2004;44:1087-97 pubmed
  • flow cytometry; human; tbl 1
Yamada H, Shimada S, Kato E, Morikawa M, Iwabuchi K, Kishi R, et al. Decrease in a specific killer cell immunoglobulin-like receptor on peripheral natural killer cells in women with recurrent spontaneous abortion of unexplained etiology. Am J Reprod Immunol. 2004;51:241-7 pubmed
  • flow cytometry; human
Braun R, Foerster M, Grahmann P, Haefner D, Workalemahu G, Kroegel C. Phenotypic and molecular characterization of CD103+ CD4+ T cells in bronchoalveolar lavage from patients with interstitial lung diseases. Cytometry B Clin Cytom. 2003;54:19-27 pubmed
  • flow cytometry; human
Stacchini A, Demurtas A, Godio L, Martini G, Antinoro V, Palestro G. Flow cytometry in the bone marrow staging of mature B-cell neoplasms. Cytometry B Clin Cytom. 2003;54:10-8 pubmed
  • immunohistochemistry - frozen section; human; fig 1
Tjernlund A, Fleener Z, Behbahani H, Connick E, Sonnerborg A, Broström C, et al. Suppression of leukemia inhibitor factor in lymphoid tissue in primary HIV infection: absence of HIV replication in gp130-positive cells. AIDS. 2003;17:1303-10 pubmed
  • flow cytometry; human
Rahimi K, Maerz H, Zotz R, Tarnok A. Pre-procedural expression of Mac-1 and LFA-1 on leukocytes for prediction of late restenosis and their possible correlation with advanced coronary artery disease. Cytometry B Clin Cytom. 2003;53:63-9 pubmed
  • flow cytometry; human; tbl 2
Rouard H, Leon A, De Reys S, Taylor L, Logan J, Marquet J, et al. A closed and single-use system for monocyte enrichment: potential for dendritic cell generation for clinical applications. Transfusion. 2003;43:481-7 pubmed
  • flow cytometry; human; fig 1
Grimbacher B, Hutloff A, Schlesier M, Glocker E, Warnatz K, Dräger R, et al. Homozygous loss of ICOS is associated with adult-onset common variable immunodeficiency. Nat Immunol. 2003;4:261-8 pubmed
  • flow cytometry; human; fig 1
Loza M, Perussia B. Peripheral immature CD2-/low T cell development from type 2 to type 1 cytokine production. J Immunol. 2002;169:3061-8 pubmed
  • flow cytometry; human
Manz M, Miyamoto T, Akashi K, Weissman I. Prospective isolation of human clonogenic common myeloid progenitors. Proc Natl Acad Sci U S A. 2002;99:11872-7 pubmed
  • flow cytometry; human; 4 ug/ml
McIlroy D, Troadec C, Grassi F, Samri A, Barrou B, Autran B, et al. Investigation of human spleen dendritic cell phenotype and distribution reveals evidence of in vivo activation in a subset of organ donors. Blood. 2001;97:3470-7 pubmed
  • flow cytometry; human; fig 1
Thompson S, Luyrink L, Graham T, Tsoras M, Ryan M, Passo M, et al. Chemokine receptor CCR4 on CD4+ T cells in juvenile rheumatoid arthritis synovial fluid defines a subset of cells with increased IL-4:IFN-gamma mRNA ratios. J Immunol. 2001;166:6899-906 pubmed
  • flow cytometry; human; fig 3
Telford W, Moss M, Morseman J, Allnutt F. Cryptomonad algal phycobiliproteins as fluorochromes for extracellular and intracellular antigen detection by flow cytometry. Cytometry. 2001;44:16-23 pubmed
  • flow cytometry; human; fig 4
Agrawal S, Marquet J, Plumas J, Rouard H, Delfau Larue M, Gaulard P, et al. Multiple co-stimulatory signals are required for triggering proliferation of T cells from human secondary lymphoid tissue. Int Immunol. 2001;13:441-50 pubmed
  • flow cytometry; human
Lafont B, Gloeckler L, D Hautcourt J, Gut J, Aubertin A. One-round determination of seven leukocyte subsets in rhesus macaque blood by flow cytometry. Cytometry. 2000;41:193-202 pubmed
  • flow cytometry; human; tbl 2
Kappelmayer J, Gratama J, Karászi E, Menendez P, Ciudad J, Rivas R, et al. Flow cytometric detection of intracellular myeloperoxidase, CD3 and CD79a. Interaction between monoclonal antibody clones, fluorochromes and sample preparation protocols. J Immunol Methods. 2000;242:53-65 pubmed
  • flow cytometry; human
Graziani Bowering G, Filion L. Down regulation of CD4 expression following isolation and culture of human monocytes. Clin Diagn Lab Immunol. 2000;7:182-91 pubmed
  • flow cytometry; human; tbl 5
Martín Henao G, Picon M, Amill B, Querol S, Gonzalez J, Martinez C, et al. Isolation of CD34+ progenitor cells from peripheral blood by use of an automated immunomagnetic selection system: factors affecting the results. Transfusion. 2000;40:35-43 pubmed
  • flow cytometry; human
Le Cleach L, Delaire S, Boumsell L, Bagot M, Bourgault Villada I, Bensussan A, et al. Blister fluid T lymphocytes during toxic epidermal necrolysis are functional cytotoxic cells which express human natural killer (NK) inhibitory receptors. Clin Exp Immunol. 2000;119:225-30 pubmed
  • flow cytometry; human
Gopinath R, Hanna L, Kumaraswami V, Perumal V, Kavitha V, Vijayasekaran V, et al. Perturbations in eosinophil homeostasis following treatment of lymphatic filariasis. Infect Immun. 2000;68:93-9 pubmed
  • flow cytometry; mouse
Paz Miguel J, Flores R, Sanchez Velasco P, Ocejo Vinyals G, Escribano de Diego J, López de Rego J, et al. Reactive oxygen intermediates during programmed cell death induced in the thymus of the Ts(1716)65Dn mouse, a murine model for human Down's syndrome. J Immunol. 1999;163:5399-410 pubmed
  • flow cytometry; human
Cron R, Bort S, Wang Y, Brunvand M, Lewis D. T cell priming enhances IL-4 gene expression by increasing nuclear factor of activated T cells. J Immunol. 1999;162:860-70 pubmed
  • flow cytometry; human; fig 4
Kim C, Pelus L, White J, Applebaum E, Johanson K, Broxmeyer H. CK beta-11/macrophage inflammatory protein-3 beta/EBI1-ligand chemokine is an efficacious chemoattractant for T and B cells. J Immunol. 1998;160:2418-24 pubmed
  • flow cytometry; human; fig 5
Verhasselt B, De Smedt M, Verhelst R, Naessens E, Plum J. Retrovirally transduced CD34++ human cord blood cells generate T cells expressing high levels of the retroviral encoded green fluorescent protein marker in vitro. Blood. 1998;91:431-40 pubmed
  • immunocytochemistry; human; fig 3
Basch R, Quito F, Beh J, Hirst J. Growth of human hematopoietic cells in immunodeficient mice conditioned with cyclophosphamide and busulfan. Stem Cells. 1997;15:314-23 pubmed
  • immunocytochemistry; human; fig 2
Yeaman G, Guyre P, Fanger M, Collins J, White H, Rathbun W, et al. Unique CD8+ T cell-rich lymphoid aggregates in human uterine endometrium. J Leukoc Biol. 1997;61:427-35 pubmed
  • immunoprecipitation; human; fig 3
Borst J, Alexander S, Elder J, Terhorst C. The T3 complex on human T lymphocytes involves four structurally distinct glycoproteins. J Biol Chem. 1983;258:5135-41 pubmed
  • western blot; human
Gold D, Puck J, Pettey C, Cho M, Coligan J, Woody J, et al. Isolation of cDNA clones encoding the 20K non-glycosylated polypeptide chain of the human T-cell receptor/T3 complex. Nature. 1986;321:431-4 pubmed
Bahia El Idrissi N, Iyer A, Ramaglia V, Rosa P, Soares C, Baas F, et al. In Situ complement activation and T-cell immunity in leprosy spectrum: An immunohistological study on leprosy lesional skin. PLoS ONE. 2017;12:e0177815 pubmed publisher
Cheng L, Ma J, Li J, Li D, Li G, Li F, et al. Blocking type I interferon signaling enhances T cell recovery and reduces HIV-1 reservoirs. J Clin Invest. 2017;127:269-279 pubmed publisher
Wang Y, Ma C, Ling Y, Bousfiha A, Camcioglu Y, Jacquot S, et al. Dual T cell- and B cell-intrinsic deficiency in humans with biallelic RLTPR mutations. J Exp Med. 2016;213:2413-2435 pubmed
product information
Product Type :
Antibody
Product Name :
CD3 Monoclonal Antibody (7D6)
Catalog # :
MHCD0300
Quantity :
0.5 mL
Price :
US 155.00
Clonality :
Monoclonal
Purity :
purified
Host :
Mouse
Reactivity :
Human
Applications :
Flow Cytometry: 1:20
Species :
Human
Clone :
7D6
Isotype :
IgG2a
Storage :
4° C, store in dark
Description :
The CD3 subunit complex which is crucial in transducing antigen-recognition signals into the cytoplasm of T cells and in regulating the cell surface expression of the TCR complex. T cell activation through the antigen receptor (TCR) involves the cytoplasmic tails of the CD3 subunits CD3 gamma, CD3 delta, CD3 epsilon and CD3 zeta. These CD3 subunits are structurally related members of the immunoglobulins super family encoded by closely linked genes on human chromosome 11. The CD3 components have long cytoplasmic tails that associate with cytoplasmic signal transduction molecules and this association is mediated at least in part by a double tyrosine-based motif present in a single copy in the CD3 subunits. CD3 may play a role in TCR-induced growth arrest, cell survival and proliferation. The CD3 antigen is present on 68-82% of normal peripheral blood lymphocytes, 65-85% of thymocytes and Purkinje cells in the cerebellum. It is never expressed on B or NK cells. Decreased percentages of T lymphocytes may be observed in some autoimmune diseases. The genes encoding the CD3 epsilon, gamma and delta polypeptides are located on chromosome 11. Defects in the CD3 gene are associated with CD3 immunodeficiency.
Immunogen :
Human CD3 epsilon
Format :
Liquid
Applications w/Dilutions :
Flow Cytometry: 1:20
Aliases :
4930549J05Rik; A430104F18Rik; AI504783; antigen CD3D, delta polypeptide (TiT3 complex); antigen CD3E, epsilon polypeptide (TiT3 complex); antigen CD3G, gamma polypeptide; antigen CD3Z, zeta polypeptide; AW552088; Cd247; CD247 antigen; CD247 antigen, zeta subunit; Cd247 molecule; CD3; CD3 antigen delta chain; CD3 antigen delta polypeptide; CD3 antigen gamma chain; CD3 antigen, delta polypeptide; CD3 antigen, delta subunit; CD3 antigen, epsilon polypeptide; CD3 antigen, gamma polypeptide; CD3 antigen, zeta polypeptide; CD3 delta; CD3 epsilon; CD3 epsilon chain; CD3 epsilon subunit; CD3 epsilon subunit precursor; CD3 gamma-chain; CD3 glycoprotein; CD3 glycoprotein precursor; CD3 molecule delta polypeptide; CD3 molecule, delta; CD3 molecule, epsilon; CD3 molecule, epsilon polypeptide; CD3 molecule, gamma; CD3 molecule, gamma polypeptide; CD3 protein; CD3 type I transmembrane glycoprotein; CD3 type I transmembrane glycoprotein precursor; CD3 zeta chain; Cd3d; CD3D antigen delta; CD3D antigen, delta polypeptide (TiT3 complex); CD3d molecule; CD3d molecule, delta (CD3-TCR complex); CD3-DELTA; Cd3e; CD3E antigen, epsilon polypeptide; CD3E antigen, epsilon polypeptide (TiT3 complex); CD3e molecule; CD3e molecule, epsilon (CD3-TCR complex); CD3epsilon; CD3-epsilon; Cd3-eta; Cd3g; CD3G antigen, gamma polypeptide; CD3g antigen, gamma polypeptide (TiT3 complex); CD3g molecule; CD3g molecule, epsilon (CD3-TCR complex); CD3g molecule, gamma (CD3-TCR complex); CD3-GAMMA; Cd3h; CD3Q; Cd3z; CD3Z antigen, zeta polypeptide (TiT3 complex); Cd3zeta; Cd3-zeta; CD3zeta chain; CD3-zeta/eta; Ctg3; Ctg-3; FLJ18683; IMD17; IMD18; IMD19; IMD25; Leu-4; OKT3, delta chain; T3/TCR complex; T3d; T3e; T3g; T3Z; T-cell antigen receptor complex, epsilon subunit of T3; T-cell antigen receptor complex, gamma subunit of T3; T-cell antigen receptor complex, zeta subunit of CD3; T-cell receptor CD3 epsilon chain; T-cell receptor CD3 epsilon subunit; T-cell receptor CD3 subunit zeta; T-cell receptor CD3, subunit zeta; T-cell receptor T3 delta chain; T-cell receptor T3 eta chain; T-cell receptor T3 gamma chain; T-cell receptor T3 zeta chain; T-cell receptor zeta chain; T-cell surface antigen T3/Leu-4 epsilon chain; T-cell surface glycoprotein CD3 delta chain; T-cell surface glycoprotein CD3 epsilon chain; T-cell surface glycoprotein CD3 gamma chain; T-cell surface glycoprotein CD3 zeta chain; T-cell surface protein; TcR CD3 delta-chain; TcR CD3 gamma-chain; TCR zeta chain; TCR zeta chain subunit; TCRE; Tcrk; TCRZ; TCRzeta; TiT3 complex; type I transmembrane protein; T-cell surface molecule CD3
more info or order :
company information
Invitrogen
Thermo Fisher Scientific
81 Wyman Street
Waltham, MA USA 02451
https://www.thermofisher.com
800-678-5599
headquarters: USA