Catalog #CP213

RecombiMAb anti-mouse/human EGFR (domain III) (LALA-PG) - PREORDER

Clone G5V2-CP213
Reactivities Mouse, Human
Applications ELISA
Isotype Mouse IgG2a, κ

$560.00 - $7,581.50

$560.00 - $7.00

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  • 25 mg - $7,581.50
  • 5 mg - $2,170.50
  • 1 mg - $560.00
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Product Description

The G5V2 monoclonal antibody reacts with both mouse and human epidermal growth factor receptor (EGFR; ErbB1; HER1; CD331), a transmembrane receptor tyrosine kinase of the ErbB receptor family that regulates cell proliferation, differentiation, survival, migration, and tissue repair. EGFR is widely expressed on epithelial cells and is frequently overexpressed or dysregulated in numerous malignancies, including colorectal, lung, head and neck, pancreatic, and other epithelial cancers. Ligand binding by epidermal growth factor (EGF) and related ligands induces receptor dimerization, activation of intracellular kinase signaling pathways, and downstream MAPK, PI3K/AKT, and JAK/STAT signaling. The G5V2 clone recognizes domain III of the extracellular region of EGFR and blocks ligand binding, thereby inhibiting receptor activation. Unlike many commonly used anti-EGFR antibodies that recognize only human EGFR, G5V2 cross-reacts with both mouse and human EGFR, making it well suited for studies requiring cross-species target recognition. The antibody has been shown to bind both mouse and human EGFR and inhibit EGF-EGFR interactions. This Bio X Cell recombinant antibody incorporates L234A, L235A, and P329G (LALA-PG) Fc mutations within a mouse IgG2a isotype to markedly reduce Fcγ receptor and complement interactions while preserving FcRn-mediated half-life. The LALA-PG mutations minimize Fc-mediated effector functions, allowing investigators to evaluate the biological consequences of EGFR blockade without confounding immune cell depletion or Fc-dependent mechanisms.

Specifications

Isotype Mouse IgG2a, κ
Recommended Isotype Control(s) RecombiMAb mouse IgG2a (LALA-PG) isotype control, anti-hen egg lysozyme
Recommended Dilution Buffer InVivoPure pH 7.0 Dilution Buffer
Mutations LALA-PG
Immunogen Extracellular region of hEGFR (residues Leu25-Lys642)
Reported Applications ELISA
Formulation PBS, pH 7.0
Contains no stabilizers or preservatives
Endotoxin ≤0.5EU/mg (≤0.0005EU/μg)
Determined by LAL assay
Aggregation <5%
Determined by SEC
Purity ≥95%
Determined by SDS-PAGE
Sterility 0.2 µm filtration
Production Purified from mammalian cell supernatant in an animal-free facility
Purification Protein G
Molecular Weight 150 kDa
Murine Pathogen Tests Ectromelia/Mousepox Virus: Negative
Hantavirus: Negative
K Virus: Negative
Lactate Dehydrogenase-Elevating Virus: Negative
Lymphocytic Choriomeningitis virus: Negative
Mouse Adenovirus: Negative
Mouse Cytomegalovirus: Negative
Mouse Hepatitis Virus: Negative
Mouse Minute Virus: Negative
Mouse Norovirus: Negative
Mouse Parvovirus: Negative
Mouse Rotavirus: Negative
Mycoplasma Pulmonis: Negative
Pneumonia Virus of Mice: Negative
Polyoma Virus: Negative
Reovirus Screen: Negative
Sendai Virus: Negative
Theiler’s Murine Encephalomyelitis: Negative
Storage The antibody solution should be stored at the stock concentration at 4°C. Do not freeze.
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Application References

  • ELISA
    Liu X, Tian X, Hao X, Zhang H, Wang K, Wei Z, Wei X, Li Y, Sui J (2022). "A cross-reactive pH-dependent EGFR antibody with improved tumor selectivity and penetration obtained by structure-guided engineering" Mol Ther Oncolytics .

    The clinical use of anti-EGFR antibody-based cancer therapy has been limited by antibody-EGFR binding in normal tissues, so developing pH-dependent anti-EGFR antibodies that selectively bind with EGFR in tumors-by taking advantage of the acidity of tumor microenvironment relative to normal tissues-may overcome these limitations. Here, we generated pH-dependent anti-EGFR antibodies with cross-species reactivity for human and mouse EGFR, and we demonstrate that pH-dependent antibodies exhibit tumor-selective binding by binding strongly to EGFR under acidic conditions (pH 6.5) but binding weakly under neutral (pH 7.4) conditions. Based on screening a non-immune human antibody library and antibody affinity maturation, we initially generated antibodies with cross-species reactivity for human and mouse EGFR. A structure model was subsequently constructed and interrogated for hotspots affecting pH-dependent binding, which supported development of a cross-reactive pH-dependent anti-EGFR antibody, G532. Compared with its non-pH-dependent antibody variant, G532 exhibits improved tumor selectivity, tumor penetration, and antitumor activity. Thus, beyond showing that pH-dependent anti-EGFR antibodies can overcome multiple limitations with antibody-based cancer therapies targeting EGFR, our study illustrates a structure-guided antibody-antigen binding pH-dependency engineering strategy to enhance antibody tumor selectivity and tumor penetration, which can inform the future development of antibody-based cancer therapies targeting other ubiquitously expressed molecules.

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