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 :
Granzyme B Monoclonal Antibody (NGZB), PE, eBioscience
catalog :
12-8898-82
quantity :
100 ug
price :
US 388.00
clonality :
monoclonal
host :
rat
conjugate :
PE
clone name :
NGZB
reactivity :
mouse
application :
flow cytometry
more info or order :
citations: 81
Published Application/Species/Sample/DilutionReference
  • flow cytometry; mouse; loading ...; fig 5e
Huang J, Wang X, Li B, Shen S, Wang R, Tao H, et al. L-5-hydroxytryptophan promotes antitumor immunity by inhibiting PD-L1 inducible expression. J Immunother Cancer. 2022;10: pubmed publisher
  • flow cytometry; mouse; 1:100; loading ...; fig s1a
Davies A, Kim H, González Cano R, Choi J, Back S, Roh S, et al. Natural Killer Cells Degenerate Intact Sensory Afferents following Nerve Injury. Cell. 2019;176:716-728.e18 pubmed publisher
  • flow cytometry; mouse; loading ...; fig 2f
Lee Y, Ju J, Shon W, Oh S, Min C, Kang M, et al. Skewed Dendritic Cell Differentiation of MyD88-Deficient Donor Bone Marrow Cells, Instead of Massive Expansion as Myeloid-Derived Suppressor Cells, Aggravates GVHD. Immune Netw. 2018;18:e44 pubmed publisher
  • flow cytometry; mouse; loading ...; fig 3e
Quandt J, Schlude C, Bartoschek M, Will R, Cid Arregui A, Schölch S, et al. Long-peptide vaccination with driver gene mutations in p53 and Kras induces cancer mutation-specific effector as well as regulatory T cell responses. Oncoimmunology. 2018;7:e1500671 pubmed publisher
  • flow cytometry; mouse; 1:66; loading ...; fig 2d
Wang F, Meng M, Mo B, Yang Y, Ji Y, Huang P, et al. Crosstalks between mTORC1 and mTORC2 variagate cytokine signaling to control NK maturation and effector function. Nat Commun. 2018;9:4874 pubmed publisher
  • flow cytometry; mouse; loading ...; fig 4a
Xi J, Huang Q, Wang L, Ma X, Deng Q, Kumar M, et al. miR-21 depletion in macrophages promotes tumoricidal polarization and enhances PD-1 immunotherapy. Oncogene. 2018;37:3151-3165 pubmed publisher
  • flow cytometry; mouse; loading ...; fig 4k
Förster M, Boora R, Petrov J, Fodil N, Albanese I, Kim J, et al. A role for the histone H2A deubiquitinase MYSM1 in maintenance of CD8+ T cells. Immunology. 2017;151:110-121 pubmed publisher
  • flow cytometry; mouse; 1:100; fig s6a
Bulla R, Tripodo C, Rami D, Ling G, Agostinis C, Guarnotta C, et al. C1q acts in the tumour microenvironment as a cancer-promoting factor independently of complement activation. Nat Commun. 2016;7:10346 pubmed publisher
Li J, Shi D, Li S, Shi X, Liu Y, Zhang Y, et al. KEAP1 promotes anti-tumor immunity by inhibiting PD-L1 expression in NSCLC. Cell Death Dis. 2024;15:175 pubmed publisher
Krug A, Tosolini M, Madji Hounoum B, Fourni xe9 J, Geiger R, Pecoraro M, et al. Inhibition of choline metabolism in an angioimmunoblastic T-cell lymphoma preclinical model reveals a new metabolic vulnerability as possible target for treatment. J Exp Clin Cancer Res. 2024;43:43 pubmed publisher
Li K, Liu W, Yu H, Chen J, Tang W, Wang J, et al. 68Ga-FAPI PET imaging monitors response to combined TGF-βR inhibition and immunotherapy in metastatic colorectal cancer. J Clin Invest. 2024;134: pubmed publisher
Wang Z, Li W, Jiang Y, Tran T, Cordova L, Chung J, et al. Sphingomyelin-derived nanovesicles for the delivery of the IDO1 inhibitor epacadostat enhance metastatic and post-surgical melanoma immunotherapy. Nat Commun. 2023;14:7235 pubmed publisher
Xiao X, Shi J, He C, Bu X, Sun Y, Gao M, et al. ERK and USP5 govern PD-1 homeostasis via deubiquitination to modulate tumor immunotherapy. Nat Commun. 2023;14:2859 pubmed publisher
Pandit M, Kil Y, Ahn J, Pokhrel R, Gu Y, Mishra S, et al. Methionine consumption by cancer cells drives a progressive upregulation of PD-1 expression in CD4 T cells. Nat Commun. 2023;14:2593 pubmed publisher
Zhu Z, Tang R, Huff S, Kummetha I, Wang L, Li N, et al. Small-molecule PTPN2 Inhibitors Sensitize Resistant Melanoma to Anti-PD-1 Immunotherapy. Cancer Res Commun. 2023;3:119-129 pubmed publisher
Wu B, Qi L, Chiang H, Pan H, Zhang X, Greenbaum A, et al. BRCA1 deficiency in mature CD8+ T lymphocytes impairs antitumor immunity. J Immunother Cancer. 2023;11: pubmed publisher
Li Q, Zhang L, You W, Xu J, Dai J, Hua D, et al. PRDM1/BLIMP1 induces cancer immune evasion by modulating the USP22-SPI1-PD-L1 axis in hepatocellular carcinoma cells. Nat Commun. 2022;13:7677 pubmed publisher
Wang W, Wu S, Cen Z, Zhang Y, Chen Y, Huang Y, et al. Mobilizing phospholipids on tumor plasma membrane implicates phosphatidylserine externalization blockade for cancer immunotherapy. Cell Rep. 2022;41:111582 pubmed publisher
Deng P, Wang Z, Chen J, Liu S, Yao X, Liu S, et al. RAD21 amplification epigenetically suppresses interferon signaling to promote immune evasion in ovarian cancer. J Clin Invest. 2022;132: pubmed publisher
Chryplewicz A, Scotton J, Tichet M, Zomer A, Shchors K, Joyce J, et al. Cancer cell autophagy, reprogrammed macrophages, and remodeled vasculature in glioblastoma triggers tumor immunity. Cancer Cell. 2022;40:1111-1127.e9 pubmed publisher
Wong S, McCarroll J, Hsu K, Geczy C, Tedla N. Intranasal Delivery of Recombinant S100A8 Protein Delays Lung Cancer Growth by Remodeling the Lung Immune Microenvironment. Front Immunol. 2022;13:826391 pubmed publisher
Chen X, Wang K, Jiang S, Sun H, Che X, Zhang M, et al. eEF2K promotes PD-L1 stabilization through inactivating GSK3β in melanoma. J Immunother Cancer. 2022;10: pubmed publisher
Ren J, Li N, Pei S, Lian Y, Li L, Peng Y, et al. Histone methyltransferase WHSC1 loss dampens MHC-I antigen presentation pathway to impair IFN-γ-stimulated anti-tumor immunity. J Clin Invest. 2022;: pubmed publisher
Maity S, Chakraborty A, Mahata S, Roy S, Das A, Sen M. Wnt5A Signaling Blocks Progression of Experimental Visceral Leishmaniasis. Front Immunol. 2022;13:818266 pubmed publisher
Shen M, Smith H, Wei Y, Jiang Y, Zhao S, Wang N, et al. Pharmacological disruption of the MTDH-SND1 complex enhances tumor antigen presentation and synergizes with anti-PD-1 therapy in metastatic breast cancer. Nat Cancer. 2022;3:60-74 pubmed publisher
Zhang W, Zhong W, Wang B, Yang J, Yang J, Yu Z, et al. ICAM-1-mediated adhesion is a prerequisite for exosome-induced T cell suppression. Dev Cell. 2022;57:329-343.e7 pubmed publisher
Wang F, Zhang X, Liu W, Zhou Y, Wei W, Liu D, et al. Activated Natural Killer Cell Promotes Nonalcoholic Steatohepatitis Through Mediating JAK/STAT Pathway. Cell Mol Gastroenterol Hepatol. 2022;13:257-274 pubmed publisher
Sun X, Wu B, Chiang H, Deng H, Zhang X, Xiong W, et al. Tumour DDR1 promotes collagen fibre alignment to instigate immune exclusion. Nature. 2021;599:673-678 pubmed publisher
Li J, Wang S, Wang N, Zheng Y, Yang B, Wang X, et al. Aiduqing formula inhibits breast cancer metastasis by suppressing TAM/CXCL1-induced Treg differentiation and infiltration. Cell Commun Signal. 2021;19:89 pubmed publisher
Dodagatta Marri E, Ma H, Liang B, Li J, Meyer D, Chen S, et al. Integrin αvβ8 on T cells suppresses anti-tumor immunity in multiple models and is a promising target for tumor immunotherapy. Cell Rep. 2021;36:109309 pubmed publisher
Steele L, Mannion A, Shaw G, MacLennan K, Cook G, Rudd C, et al. Non-redundant activity of GSK-3α and GSK-3β in T cell-mediated tumor rejection. iScience. 2021;24:102555 pubmed publisher
Wu M, Xia X, Hu J, Fowlkes N, Li S. WSX1 act as a tumor suppressor in hepatocellular carcinoma by downregulating neoplastic PD-L1 expression. Nat Commun. 2021;12:3500 pubmed publisher
Yang N, Ji F, Cheng L, Lu J, Sun X, Lin X, et al. Knockout of immunotherapy prognostic marker genes eliminates the effect of the anti-PD-1 treatment. NPJ Precis Oncol. 2021;5:37 pubmed publisher
Luo Z, Xia K, Liu Y, Liu J, Rao S, Hu X, et al. Extracellular Vesicles from Akkermansia muciniphila Elicit Antitumor Immunity Against Prostate Cancer via Modulation of CD8+ T Cells and Macrophages. Int J Nanomedicine. 2021;16:2949-2963 pubmed publisher
Daneshmandi S, Cassel T, Lin P, Higashi R, Wulf G, Boussiotis V, et al. Blockade of 6-phosphogluconate dehydrogenase generates CD8+ effector T cells with enhanced anti-tumor function. Cell Rep. 2021;34:108831 pubmed publisher
Liu J, Wang C, Cheng T, Rixiati Y, Ji C, Deng M, et al. Circadian Clock Disruption Suppresses PDL1+ Intraepithelial B Cells in Experimental Colitis and Colitis-Associated Colorectal Cancer. Cell Mol Gastroenterol Hepatol. 2021;12:251-276 pubmed publisher
Zhuang Z, Lai X, Sun J, Chen Z, Zhang Z, Dai J, et al. Mapping and role of T cell response in SARS-CoV-2-infected mice. J Exp Med. 2021;218: pubmed publisher
Ebelt N, Zuniga E, Marzagalli M, Zamloot V, Blazar B, Salgia R, et al. Salmonella-Based Therapy Targeting Indoleamine 2,3-Dioxygenase Restructures the Immune Contexture to Improve Checkpoint Blockade Efficacy. Biomedicines. 2020;8: pubmed publisher
Utz B, Turpin R, Lampe J, Pouwels J, Klefstrom J. Assessment of the WAP-Myc mouse mammary tumor model for spontaneous metastasis. Sci Rep. 2020;10:18733 pubmed publisher
Parra M, Weitner M, Yang A, Akue A, Liu X, Schmidt T, et al. Memory CD73+IgM+ B cells protect against Plasmodium yoelii infection and express Granzyme B. PLoS ONE. 2020;15:e0238493 pubmed publisher
Hu M, Lu Y, Qi Y, Zhang Z, Wang S, Xu Y, et al. SRC-3 Functions as a Coactivator of T-bet by Regulating the Maturation and Antitumor Activity of Natural Killer Cells. Cancer Immunol Res. 2020;8:1150-1162 pubmed publisher
Waaler J, Mygland L, Tveita A, Strand M, Solberg N, Olsen P, et al. Tankyrase inhibition sensitizes melanoma to PD-1 immune checkpoint blockade in syngeneic mouse models. Commun Biol. 2020;3:196 pubmed publisher
Haque A, Samantaray S, Knaryan V, Capone M, Hossain A, Matzelle D, et al. Calpain mediated expansion of CD4+ cytotoxic T cells in rodent models of Parkinson's disease. Exp Neurol. 2020;330:113315 pubmed publisher
Lokugamage N, Choudhuri S, Davies C, Chowdhury I, Garg N. Antigen-Based Nano-Immunotherapy Controls Parasite Persistence, Inflammatory and Oxidative Stress, and Cardiac Fibrosis, the Hallmarks of Chronic Chagas Cardiomyopathy, in A Mouse Model of Trypanosoma cruzi Infection. Vaccines (Basel). 2020;8: pubmed publisher
Shi L, Wang J, Ding N, Zhang Y, Zhu Y, Dong S, et al. Inflammation induced by incomplete radiofrequency ablation accelerates tumor progression and hinders PD-1 immunotherapy. Nat Commun. 2019;10:5421 pubmed publisher
Huang A, Shinde P, Huang J, Senff T, Xu H, Margotta C, et al. Progranulin prevents regulatory NK cell cytotoxicity against antiviral T cells. JCI Insight. 2019;4: pubmed publisher
Wang Z, Chen J, Hu J, Zhang H, Xu F, He W, et al. cGAS/STING axis mediates a topoisomerase II inhibitor-induced tumor immunogenicity. J Clin Invest. 2019;129:4850-4862 pubmed publisher
Salvioni A, Belloy M, Lebourg A, Bassot E, Cantaloube Ferrieu V, Vasseur V, et al. Robust Control of a Brain-Persisting Parasite through MHC I Presentation by Infected Neurons. Cell Rep. 2019;27:3254-3268.e8 pubmed publisher
Liu C, Whitener R, Lin A, Xu Y, Chen J, Savinov A, et al. Neutrophil Cytosolic Factor 1 in Dendritic Cells Promotes Autoreactive CD8+ T Cell Activation via Cross-Presentation in Type 1 Diabetes. Front Immunol. 2019;10:952 pubmed publisher
Miao Y, Yang H, Levorse J, Yuan S, Polak L, Sribour M, et al. Adaptive Immune Resistance Emerges from Tumor-Initiating Stem Cells. Cell. 2019;177:1172-1186.e14 pubmed publisher
Takahashi Y, Yasui T, Minami K, Tamari K, Hayashi K, Otani K, et al. Carbon ion irradiation enhances the antitumor efficacy of dual immune checkpoint blockade therapy both for local and distant sites in murine osteosarcoma. Oncotarget. 2019;10:633-646 pubmed publisher
Yu X, Chen L, Liu J, Dai B, Xu G, Shen G, et al. Immune modulation of liver sinusoidal endothelial cells by melittin nanoparticles suppresses liver metastasis. Nat Commun. 2019;10:574 pubmed publisher
Wilgenburg B, Loh L, Chen Z, Pediongco T, Wang H, Shi M, et al. MAIT cells contribute to protection against lethal influenza infection in vivo. Nat Commun. 2018;9:4706 pubmed publisher
Cobbold S, Adams E, Howie D, Waldmann H. CD4+ T Cell Fate Decisions Are Stochastic, Precede Cell Division, Depend on GITR Co-Stimulation, and Are Associated With Uropodium Development. Front Immunol. 2018;9:1381 pubmed publisher
Kim D, Park H, Lim S, Koo J, Lee H, Choi J, et al. Regulation of chitinase-3-like-1 in T cell elicits Th1 and cytotoxic responses to inhibit lung metastasis. Nat Commun. 2018;9:503 pubmed publisher
Sharma M, Rodriguez P, Koehn B, Baban B, Cui Y, Guo G, et al. Activation of p53 in Immature Myeloid Precursor Cells Controls Differentiation into Ly6c+CD103+ Monocytic Antigen-Presenting Cells in Tumors. Immunity. 2018;48:91-106.e6 pubmed publisher
Barisone G, O Donnell R, Ma Y, Abuhay M, Lundeberg K, Gowda S, et al. A purified, fermented, extract of Triticum aestivum has lymphomacidal activity mediated via natural killer cell activation. PLoS ONE. 2018;13:e0190860 pubmed publisher
Takahashi Y, Yasui T, Tamari K, Minami K, Otani K, Isohashi F, et al. Radiation enhanced the local and distant anti-tumor efficacy in dual immune checkpoint blockade therapy in osteosarcoma. PLoS ONE. 2017;12:e0189697 pubmed publisher
Krzywinska E, Kantari Mimoun C, Kerdiles Y, Sobecki M, Isagawa T, Gotthardt D, et al. Loss of HIF-1α in natural killer cells inhibits tumour growth by stimulating non-productive angiogenesis. Nat Commun. 2017;8:1597 pubmed publisher
Liberti M, Dai Z, Wardell S, Baccile J, Liu X, Gao X, et al. A Predictive Model for Selective Targeting of the Warburg Effect through GAPDH Inhibition with a Natural Product. Cell Metab. 2017;26:648-659.e8 pubmed publisher
Klein Hessling S, Muhammad K, Klein M, Pusch T, Rudolf R, Flöter J, et al. NFATc1 controls the cytotoxicity of CD8+ T cells. Nat Commun. 2017;8:511 pubmed publisher
YEKU O, Purdon T, Koneru M, Spriggs D, Brentjens R. Armored CAR T cells enhance antitumor efficacy and overcome the tumor microenvironment. Sci Rep. 2017;7:10541 pubmed publisher
Egui A, Lasso P, Thomas M, Carrilero B, Gonzalez J, Cuellar A, et al. Expression of inhibitory receptors and polyfunctional responses of T cells are linked to the risk of congenital transmission of T. cruzi. PLoS Negl Trop Dis. 2017;11:e0005627 pubmed publisher
Miao T, Symonds A, Singh R, Symonds J, Ogbe A, Omodho B, et al. Egr2 and 3 control adaptive immune responses by temporally uncoupling expansion from T cell differentiation. J Exp Med. 2017;214:1787-1808 pubmed publisher
Allen E, Jabouille A, Rivera L, Lodewijckx I, Missiaen R, Steri V, et al. Combined antiangiogenic and anti-PD-L1 therapy stimulates tumor immunity through HEV formation. Sci Transl Med. 2017;9: pubmed publisher
Dai K, Huang L, Huang Y, Chen Z, Yang L, Jiang Y. 1810011o10 Rik Inhibits the Antitumor Effect of Intratumoral CD8+ T Cells through Suppression of Notch2 Pathway in a Murine Hepatocellular Carcinoma Model. Front Immunol. 2017;8:320 pubmed publisher
Sonner J, Deumelandt K, Ott M, Thomé C, Rauschenbach K, Schulz S, et al. The stress kinase GCN2 does not mediate suppression of antitumor T cell responses by tryptophan catabolism in experimental melanomas. Oncoimmunology. 2016;5:e1240858 pubmed publisher
Quispe Calla N, Vicetti Miguel R, Mei A, Fan S, Gilmore J, Cherpes T. Dendritic cell function and pathogen-specific T cell immunity are inhibited in mice administered levonorgestrel prior to intranasal Chlamydia trachomatis infection. Sci Rep. 2016;6:37723 pubmed publisher
Clever D, Roychoudhuri R, Constantinides M, Askenase M, Sukumar M, Klebanoff C, et al. Oxygen Sensing by T Cells Establishes an Immunologically Tolerant Metastatic Niche. Cell. 2016;166:1117-1131.e14 pubmed publisher
Yuan C, Sun X, Zhu C, Liu S, Wu L, Chen H, et al. Amphiregulin activates regulatory T lymphocytes and suppresses CD8+ T cell-mediated anti-tumor response in hepatocellular carcinoma cells. Oncotarget. 2015;6:32138-53 pubmed publisher
Teo T, Her Z, Tan J, Lum F, Lee W, Chan Y, et al. Caribbean and La Réunion Chikungunya Virus Isolates Differ in Their Capacity To Induce Proinflammatory Th1 and NK Cell Responses and Acute Joint Pathology. J Virol. 2015;89:7955-69 pubmed publisher
Chen L, Gibbons D, Goswami S, Cortez M, Ahn Y, Byers L, et al. Metastasis is regulated via microRNA-200/ZEB1 axis control of tumour cell PD-L1 expression and intratumoral immunosuppression. Nat Commun. 2014;5:5241 pubmed publisher
Hou H, Liu W, Wu S, Lu Y, Peng J, Zhu Y, et al. Tim-3 negatively mediates natural killer cell function in LPS-induced endotoxic shock. PLoS ONE. 2014;9:e110585 pubmed publisher
Salmond R, Brownlie R, Morrison V, Zamoyska R. The tyrosine phosphatase PTPN22 discriminates weak self peptides from strong agonist TCR signals. Nat Immunol. 2014;15:875-883 pubmed publisher
Kratholm S, Iversen M, Reinert L, Jensen S, Hokland M, Andersen T, et al. Interleukin-21 receptor signalling is important for innate immune protection against HSV-2 infections. PLoS ONE. 2013;8:e81790 pubmed publisher
Lim J, Gerber S, Murphy S, Lord E. Type I interferons induced by radiation therapy mediate recruitment and effector function of CD8(+) T cells. Cancer Immunol Immunother. 2014;63:259-71 pubmed publisher
Raber P, Thevenot P, Sierra R, Wyczechowska D, Halle D, Ramirez M, et al. Subpopulations of myeloid-derived suppressor cells impair T cell responses through independent nitric oxide-related pathways. Int J Cancer. 2014;134:2853-64 pubmed publisher
Takigawa T, Miyazaki H, Kinoshita M, Kawarabayashi N, Nishiyama K, Hatsuse K, et al. Glucocorticoid receptor-dependent immunomodulatory effect of ursodeoxycholic acid on liver lymphocytes in mice. Am J Physiol Gastrointest Liver Physiol. 2013;305:G427-38 pubmed publisher
Fortin C, Huang X, Yang Y. Both NK cell-intrinsic and -extrinsic STAT1 signaling are required for NK cell response against vaccinia virus. J Immunol. 2013;191:363-8 pubmed publisher
Ball E, Sambo M, Martins M, Trovoada M, Benchimol C, Costa J, et al. IFNAR1 controls progression to cerebral malaria in children and CD8+ T cell brain pathology in Plasmodium berghei-infected mice. J Immunol. 2013;190:5118-27 pubmed publisher
Cyktor J, Carruthers B, Stromberg P, Flano E, Pircher H, Turner J. Killer cell lectin-like receptor G1 deficiency significantly enhances survival after Mycobacterium tuberculosis infection. Infect Immun. 2013;81:1090-9 pubmed publisher
product information
Product Type :
Antibody
Product Name :
Granzyme B Monoclonal Antibody (NGZB), PE, eBioscience
Catalog # :
12-8898-82
Quantity :
100 ug
Price :
US 388.00
Clonality :
Monoclonal
Purity :
Affinity chromatography
Host :
Rat
Reactivity :
Mouse
Applications :
Flow Cytometry: 0.125 ug/test
Species :
Mouse
Clone :
NGZB
Isotype :
IgG2a, kappa
Storage :
4 C, store in dark, DO NOT FREEZE!
Description :
Granzyme B is a member of the granzyme serine protease family, and is found in the granules of cytotoxic T cells and NK cells. Granzyme B has been described as CGL1 (cathepsin G-like-1), a serine protease expressed only in cytotoxic T-lymphocytes after cell activation, and CTLA-1 (cytotoxic T lymphocyte-associated serine esterase 1) based on identification of mRNA in various cytotoxic T cells, but not observed in non-cytotoxic lymphoid cells. Granzyme B is crucial for the rapid induction of target cell death by apoptosis, induced by interaction with cytotoxic T cells. The receptor involved in this process has been identified as mannose 6-phosphate receptor which functions as a death receptor for Granzyme B during cytotoxic T cell-induced apoptosis. Granzyme B enters target cells to cleave caspase-3 and initiate the caspase cascade leading to DNA fragmentation and apoptosis. Granzyme B can also act through a mitochondrial apoptosis pathway by cleaving the Bid protein. Granzymes are neutral serine proteases, which are stored in specialized lytic granules of cytotoxic T lymphocytes (CTLs) and in natural killer (NK) cells. A number of granzymes (A to G) have been isolated and cloned from mouse CTLs and NK cells, however in man, fewer have been cloned and identified.
Format :
Liquid
Applications w/Dilutions :
Flow Cytometry: 0.125 ug/test
Aliases :
AI553453; C11; Cathepsin G-like 1; CCP1; CCP-1/C11; CCPI; CGL1; CGL-1; CSPB; CSP-B; Ctla1; Ctla-1; CTSGL1; cytotoxic cell protease 1; cytotoxic serine protease B; Cytotoxic T lymphocyte associated serine esterase 1; cytotoxic T-lymphocyte proteinase 2; cytotoxic T-lymphocyte-associated serine esterase 1; fragmentin; fragmentin 2; fragmentin-2; GLP I; GLP III; GLP-1; granzyme 2; granzyme B; granzyme B (granzyme 2, cytotoxic T-lymphocyte-associated serine esterase 1); granzyme B(G,H); Granzyme-2; GranzymeB; granzyme-like protein 1; granzyme-like protein I; GRB; GZB; Gzmb; HLP; human lymphocyte protein; Human lymphocyte protein (Hlp); Lymphocyte protease; Natural killer cell protease 1; OTTHUMP00000028189; RNKP-1; SECT; T-cell serine protease 1-3E
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