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HGFR/c-MET Antibody (95106) [Phycoerythrin]

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MDA-MB-231 human breast cancer cell line was stained with Mouse Anti-Human HGF R/c-MET PE-conjugated Monoclonal Antibody (Catalog # FAB3582P, filled histogram) or isotype control antibody (Catalog # IC002P, open ...read more

Product Details

Summary
Reactivity HuSpecies Glossary
Applications Flow
Clone
95106
Clonality
Monoclonal
Host
Mouse
Conjugate
Phycoerythrin

Order Details

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HGFR/c-MET Antibody (95106) [Phycoerythrin] Summary

Immunogen
Mouse myeloma cell line NS0-derived recombinant human HGF R/c-MET
Glu25-Thr932
Accession # P08581
Specificity
Detects human HGF R/c-MET.
Source
N/A
Isotype
IgG1
Clonality
Monoclonal
Host
Mouse
Gene
MET
Purity Statement
Protein A or G purified from hybridoma 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
  • Flow Cytometry 10 uL/10^6 cells
Reviewed Applications
Read 1 Review rated 4
using
FAB3582P in the following application:

Publications
Read Publications using
FAB3582P in the following applications:

Packaging, Storage & Formulations

Storage
Protect from light. Do not freeze.
  • 12 months from date of receipt, 2 to 8 °C as supplied.
Buffer
Supplied in a saline solution containing BSA and Sodium Azide.
Preservative
Sodium Azide

Notes

This product is produced by and ships from R&D Systems, Inc., a Bio-Techne brand.

Alternate Names for HGFR/c-MET Antibody (95106) [Phycoerythrin]

  • AUTS9
  • cMET
  • c-MET
  • EC 2.7.10
  • EC 2.7.10.1
  • hepatocyte growth factor receptor
  • HGF R
  • HGF receptor
  • HGF/SF receptor
  • HGFR
  • Met (c-Met)
  • met proto-oncogene (hepatocyte growth factor receptor)
  • met proto-oncogene tyrosine kinase
  • MET
  • oncogene MET
  • Proto-oncogene c-Met
  • RCCP2
  • Scatter factor receptor
  • SF receptor
  • Tyrosine-protein kinase Met

Background

HGF R, also known as Met (from N-methyl-N’-nitro-N-nitrosoguanidine induced), is a glycosylated receptor tyrosine kinase that plays a central role in epithelial morphogenesis and cancer development. HGF R is synthesized as a single chain precursor which undergoes cotranslational proteolytic cleavage. This generates a mature HGF R that is a disulfide-linked dimer composed of a 50 kDa extracellular alpha chain and a 145 kDa transmembrane beta chain (1, 2). The extracellular domain (ECD) contains a seven bladed beta -propeller sema domain, a cysteine-rich PSI/MRS, and four Ig-like E-set domains, while the cytoplasmic region includes the tyrosine kinase domain (3, 4). Proteolysis and alternate splicing generate additional forms of human HGF R which either lack of the kinase domain, consist of secreted extracellular domains, or are deficient in proteolytic separation of the alpha and beta chains (5-7). The sema domain, which is formed by both the alpha and beta chains of HGF R, mediates both ligand binding and receptor dimerization (3, 8). Ligand-induced tyrosine phosphorylation in the cytoplasmic region activates the kinase domain and provides docking sites for multiple SH2-containing molecules (9, 10). HGF stimulation induces HGF R downregulation via internalization and proteasome-dependent degradation (11). In the absence of ligand, HGF R forms non-covalent complexes with a variety of membrane proteins including CD44v6, CD151, EGF R, Fas, Integrin alpha 6/ beta 4, Plexins B1, 2, 3, and MSP R/Ron (12-19). Ligation of one complex component triggers activation of the other, followed by cooperative signaling effects (12-19). Formation of some of these heteromeric complexes is a requirement for epithelial cell morphogenesis and tumor cell invasion (12, 16, 17). Paracrine induction of epithelial cell scattering and branching tubulogenesis results from the stimulation of HGF R on undifferentiated epithelium by HGF released from neighboring mesenchymal cells (20). Genetic polymorphisms, chromosomal translocation, over-expression, and additional splicing and proteolytic cleavage of HGF R have been described in a wide range of cancers (1). Within the ECD, human HGF R shares 86-88% amino acid sequence identity with canine, mouse, and rat HGF R.

  1. Birchmeier, C. et al. (2003) Nat. Rev. Mol. Cell Biol. 4:915.
  2. Corso, S. et al. (2005) Trends Mol. Med. 11:284.
  3. Gherardi, E. et al. (2003) Proc. Natl. Acad. Sci. USA 100:12039.
  4. Park, M. et al. (1987) Proc. Natl. Acad. Sci. USA 84:6379.
  5. Crepaldi, T. et al. (1994) J. Biol. Chem. 269:1750.
  6. Prat, M. et al. (1991) Mol. Cell. Biol. 12:5954.
  7. Rodrigues, G.A. et al. (1991) Mol. Cell. Biol. 11:2962.
  8. Kong-Beltran, M. et al. (2004) Cancer Cell 6:75.
  9. Naldini, L. et al. (1991) Mol. Cell. Biol. 11:1793.
  10. Ponzetto, C. et al. (1994) Cell 77:261.
  11. Jeffers, M. et al. (1997) Mol. Cell. Biol. 17:799.
  12. Orian-Rousseau, V. et al. (2002) Genes Dev. 16:3074.
  13. Klosek, S.K. et al. (2005) Biochem. Biophys. Res. Commun. 336:408.
  14. Jo, M. et al. (2000) J. Biol. Chem. 275:8806.
  15. Wang, X. et al. (2002) Mol. Cell 9:411.
  16. Trusolino, L. et al. (2001) Cell 107:643.
  17. Giordano, S. et al. (2002) Nat. Cell Biol. 4:720.
  18. Conrotto, P. et al. (2004) Oncogene 23:5131.
  19. Follenzi, A. et al. (2000) Oncogene 19:3041.
  20. Sonnenberg, E. et al. (1993) J. Cell Biol. 123:223.

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 HGFR/c-MET Antibody (FAB3582P)(11)

We have publications tested in 1 confirmed species: Human.

We have publications tested in 2 applications: Flow Cytometry, Western Blot.


Filter By Application
Flow Cytometry
(10)
Western Blot
(1)
All Applications
Filter By Species
Human
(11)
All Species
Showing Publications 1 - 10 of 11. Show All 11 Publications.
Publications using FAB3582P Applications Species
De Bacco, F;Orzan, F;Crisafulli, G;Prelli, M;Isella, C;Casanova, E;Albano, R;Reato, G;Erriquez, J;D'Ambrosio, A;Panero, M;Dall'Aglio, C;Casorzo, L;Cominelli, M;Pagani, F;Melcarne, A;Zeppa, P;Altieri, R;Morra, I;Cassoni, P;Garbossa, D;Cassisa, A;Bartolini, A;Pellegatta, S;Comoglio, PM;Finocchiaro, G;Poliani, PL;Boccaccio, C; Coexisting cancer stem cells with heterogeneous gene amplifications, transcriptional profiles, and malignancy are isolated from single glioblastomas Cell reports 2023-07-26 [PMID: 37505981] (Flow Cytometry, Human) Flow Cytometry Human
PP Coelho, GG Hesketh, A Pedersen, E Kuzmin, AN Fortier, ES Bell, CDH Ratcliffe, AC Gingras, M Park Endosomal LC3C-pathway selectively targets plasma membrane cargo for autophagic degradation Nature Communications, 2022-07-02;13(1):3812. 2022-07-02 [PMID: 35780247] (Flow Cytometry, Human) Flow Cytometry Human
V Boschert, J Teusch, A Aljasem, P Schmucker, N Klenk, A Straub, M Bittrich, A Seher, C Linz, UDA Müller-Ric, S Hartmann HGF-Induced PD-L1 Expression in Head and Neck Cancer: Preclinical and Clinical Findings Int J Mol Sci, 2020-11-20;21(22):. 2020-11-20 [PMID: 33233528] (Western Blot, Human) Western Blot Human
SJ Wang, R Li, TSC Ng, G Luthria, MJ Oudin, M Prytyskach, RH Kohler, R Weissleder, DA Lauffenbur, MA Miller Efficient blockade of locally reciprocated tumor-macrophage signaling using a TAM-avid nanotherapy Sci Adv, 2020-05-22;6(21):eaaz8521. 2020-05-22 [PMID: 32494745] (Flow Cytometry, Human) Flow Cytometry Human
EB Jo, YS Lee, H Lee, JB Park, H Park, YL Choi, D Hong, SJ Kim Combination therapy with c-met inhibitor and TRAIL enhances apoptosis in dedifferentiated liposarcoma patient-derived cells BMC Cancer, 2019-05-24;19(1):496. 2019-05-24 [PMID: 31126284] (Flow Cytometry, Human) Flow Cytometry Human
VR Penchev, YT Chang, A Begum, T Ewachiw, C Gocke, J Li, RH McMillan, Q Wang, R Anders, L Marchionni, A Maitra, A Uren, Z Rasheed, W Matsui Ezrin promotes stem cell properties in pancreatic ductal adenocarcinoma Mol. Cancer Res., 2019-01-17;0(0):. 2019-01-17 [PMID: 30655325] (Flow Cytometry, Human) Flow Cytometry Human
Pillay S, Meyer N, Puschnik A, Davulcu O, Diep J, Ishikawa Y, Jae L, Wosen J, Nagamine C, Chapman M, Carette J An essential receptor for adeno-associated virus infection. Nature, 2016-01-27;530(7588):108-12. 2016-01-27 [PMID: 26814968] (Flow Cytometry, Human) Flow Cytometry Human
Jarantow S, Bushey B, Pardinas J, Boakye K, Lacy E, Sanders R, Sepulveda M, Moores S, Chiu M Impact of Cell-surface Antigen Expression on Target Engagement and Function of an Epidermal Growth Factor Receptor x c-MET Bispecific Antibody. J Biol Chem, 2015-08-10;290(41):24689-704. 2015-08-10 [PMID: 26260789] (Flow Cytometry, Human) Flow Cytometry Human
Tervonen T, Belitskin D, Pant S, Englund J, Marques E, Ala-Hongisto H, Nevalaita L, Sihto H, Heikkila P, Leidenius M, Hewitson K, Ramachandra M, Moilanen A, Joensuu H, Kovanen P, Poso A, Klefstrom J Deregulated hepsin protease activity confers oncogenicity by concomitantly augmenting HGF/MET signalling and disrupting epithelial cohesion. Oncogene, 2015-07-13;0(0):ePub. 2015-07-13 [PMID: 26165838] (Flow Cytometry, Human) Flow Cytometry Human
Ekert , Jason E, Johnson , Kjell, Strake , Brandy, Pardinas , Jose, Jarantow , Stephen, Perkinson , Robert, Colter , David C Three-dimensional lung tumor microenvironment modulates therapeutic compound responsiveness in vitro--implication for drug development. PLoS ONE, 2014-03-17;9(3):e92248. 2014-03-17 [PMID: 24638075] (Flow Cytometry, Human) Flow Cytometry Human
Show All 11 Publications.

Review for HGFR/c-MET Antibody (FAB3582P) (1) 41

Average Rating: 4
(Based on 1 review)
We have 1 review tested in 1 species: Human.

Reviews using FAB3582P:
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Flow
(1)
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Images Ratings Applications Species Date Details
  4
reviewed by:
Verified Customer
Flow Human 01/26/2015
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Summary

ApplicationFlow Cytometry
Sample TestedSee PMID: 24013625
SpeciesHuman

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Verified Customer
01/26/2015
Application: Flow
Species: Human

Bioinformatics

Gene Symbol MET
Uniprot