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Products >> Antibodies、Peptides >> Primary antibodies
Anti-eIF4EBP1 (phospho T70) antibody crn-0025R
Product ID                                     crn-0025R   
English name                              Anti-eIF4EBP1 (phospho T70) antibody
Product Price                               100µg   $ 620
Immunogen                                 Synthetic phosphopeptide derived from human eIF4EBP1  around the phosphorylation site threonine 70 .
Reacts with                                  Hu, Ms, Rat

Raised in 

Rabbit

Clonality 

Polyclonal

Isotype 

IgG

Purity 

Immunogen affinity purified

Storage buffer                              Preservative: 0.02% Sodium Azide
                                                       Constituents: 50% Glycerol, PBS (without Mg2+ and Ca2+), 150mM Sodium chloride, pH 7.4
Form                                              Lyophilized or Liquid  
Concentration                              1.000 mg/ml  
Recommended dilutions          ELISA: Use at an assay dependent dilution(1:1000-5000) .             
                                                        WB: 1/100 - 1/1000.                                                      
                                                        Not yet tested in other applications.
                                                        Optimal dilutions/concentrations should be determined by the end user.

Function 

Regulates eIF4E activity by preventing its assembly into the eIF4F complex. Mediates the regulation of protein translation by hormones, growth factors and other stimuli that signal through the MAP kinase and mTORC1 pathways.

Sequence similarities 

Belongs to the eIF4E-binding protein family.

Post-translational
modifications 

Phosphorylated on serine and threonine residues in response to insulin, EGF and PDGF. Phosphorylation at Thr-37, Thr-46, Ser-65 and Thr-70 is regulated by mTORC1. Phosphorylated upon DNA damage, probably by ATM or ATR.

                                                       All eukaryotic cells express Actin, which often constitutes as much as 50% of
                                          total cellular protein. Actin filaments can form both stable and labile structures
                                          and are crucial components of microvilli and the contractile apparatus of muscle
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