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FRS2-α Recombinant Rabbit mAb (S-4065-67)

FRS2-α Recombinant Rabbit mAb (S-4065-67)

Catalog Number: S0B60054 Application: WB Reactivity: Ms, Rt, Mk Conjugation: Unconjugated Brand: Starter
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Regular price $100 USD
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Product Details

Product Specification


Host Rabbit
Antigen FRS2-α
Synonyms Fibroblast growth factor receptor substrate 2; FGFR-signaling adaptor SNT; FRS2-alpha; Suc1-associated neurotrophic factor target 1 (SNT-1); Frs2a; Frs2
Immunogen Synthetic Peptide
Location Membrane
Accession Q8C180
Clone Number S-4065-67
Antibody Type Recombinant mAb
Isotype IgG
Application WB
Reactivity Ms, Rt, Mk
Positive Sample 3T3-L1, C2C12, PC-12, C6, COS-7
Purification Protein A
Concentration 2 mg/ml
Conjugation Unconjugated
Physical Appearance Liquid
Storage Buffer

PBS, 40% Glycerol, 0.05% BSA, 0.02% sodium azide

Stability & Storage

12 months from date of receipt / reconstitution, -20 °C as supplied

Dilution


application dilution species
WB 1:1000 Ms, Rt, Mk

Background

FRS2-α (fibroblast growth factor receptor substrate 2-α) is a key adaptor protein characterized by an N-terminal PTB domain and multiple C-terminal tyrosine phosphorylation sites. It specifically anchors to the juxtamembrane regions of activated FGFR (fibroblast growth factor receptor) and TRK (tropomyosin receptor kinase) receptors. Upon phosphorylation by Src family kinases and others, it recruits the GRB2-SOS complex and activates the RAS-MAPK signaling pathway. Simultaneously, FRS2-α can independently initiate the PI3K-AKT pathway, thereby playing a core regulatory role in cell proliferation, differentiation, survival, and migration. Notably, FRS2-α not only serves as a "platform" for receptor signal amplification but also participates in signal negative feedback regulation: its downstream effector ERK can phosphorylate multiple serine/threonine sites on FRS2-α, inhibiting the binding of the PTB domain to the receptor, forming a classical negative feedback loop. In various tumors, amplification or overexpression of the FRS2-α gene leads to excessive activation of signaling pathways, promoting tumor progression, making it a potential therapeutic target. Furthermore, FRS2-α also plays important roles in metabolic regulation and nervous system development, and its mutations are associated with specific skeletal developmental abnormalities.

Picture

Western Blot

WB result of FRS2-α Recombinant Rabbit mAb
Primary antibody incubation conditions: overnight at 4°C
Primary antibody: FRS2-α Recombinant Rabbit mAb at 1/1000 dilution
Lane 1: 3T3-L1 whole cell lysate 20 µg
Lane 2: C2C12 whole cell lysate 20 µg 
Secondary antibody: Goat Anti- rabbit IgG, (H+L), HRP conjugated at 1/10000 dilution
Predicted MW: 57 kDa
Observed MW: 70 kDa

WB result of FRS2-α Recombinant Rabbit mAb
Primary antibody incubation conditions: overnight at 4°C
Primary antibody: FRS2-α Recombinant Rabbit mAb at 1/1000 dilution
Lane 1: PC-12 whole cell lysate 20 µg
Lane 2: C6 whole cell lysate 20 µg
Secondary antibody: Goat Anti- rabbit IgG, (H+L), HRP conjugated at 1/10000 dilution
Predicted MW: 57 kDa
Observed MW: 70 kDa
This blot was developed with high sensitivity substrate

WB result of FRS2-α Recombinant Rabbit mAb
Primary antibody incubation conditions: overnight at 4°C
Primary antibody: FRS2-α Recombinant Rabbit mAb at 1/1000 dilution
Lane 1: COS-7 whole cell lysate 20 µg 
Secondary antibody: Goat Anti- rabbit IgG, (H+L), HRP conjugated at 1/10000 dilution
Predicted MW: 57 kDa
Observed MW: 70 kDa
This blot was developed with high sensitivity substrate