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Insulin Receptor Rabbit Polyclonal Antibody
Catalog #:EAB14596
  SKU-Pack Size Availability Size Price
EAB14596-30UL In Stock 30ul ¥890.00
EAB14596-100UL In Stock 100ul ¥1990.00
EAB14596-200UL In Stock 200ul ¥3390.00
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Product Information
Applications WB, IHC-P, IF/ICC, ELISA
Species Reactivity Human, Mouse, Rat, Pig
Host / Isotype Rabbit IgG
Clonality Polyclonal
Applications Dilutions WB=1:500-2000 
IHC-P=1:50-300 
IF/ICC=1:50-300
MW (kDa) 156
Conjugate Unconjugate
Specificity Insulin Receptor Rabbit Polyclonal Antibody detects endogenous levels of Insulin Receptor protein.
Purification Affinity purification
Concentration 1mg/ml
Format Liquid
Formulation In PBS, pH 7.4, containing 0.02% sodium azide,0.5% BSA and 50% glycerol.
Shipping Gel Pack
Storage Store at -20°C least 1 year from the date of shipment. avoid repeated freeze/thaw cycles. Aliquots may be stored at +4°C for 1-2 weeks.
Research Use For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
Application Key

WB-Western Blot IP-Immunoprecipitation IHC-Immunohistochemistry IF-Immunofluorescence ICC-Immunocytochemistry FC-Flow Cytometry

Reactivity Key

H-Human M-Mouse R-Rat Mk-Monkey B-Bovine Pg-Pig Hm-Hamster Dg-Dog C-Chicken X-Xenopus Z-Zebrafish Hr-Horse All-All Species Expected

Product Bioinformatics
Synonym(s) Insulin receptor; HHF5; CD220; INSR
Gene Aliases INSR
UniProt ID

P06213

Entrez Gene ID

3643

Product Description

Insulin receptor is a crucial heterotetrameric protein composed of two extracellular alpha subunits and two transmembrane beta subunits, which are connected by disulfide bonds. The alpha subunits are responsible for binding insulin, initiating conformational changes that activate the receptor′s intrinsic tyrosine kinase activity in the beta subunits. This structural configuration is vital for the receptor′s function in mediating insulin′s metabolic effects, such as facilitating glucose uptake into cells, promoting glycogen synthesis, and regulating various aspects of cellular metabolism and growth. Upon insulin binding, the receptor undergoes autophosphorylation of its tyrosine kinase domains, triggering a cascade of downstream signaling pathways that enhance glucose transport, increase cell permeability to monosaccharides, amino acids, and fatty acids, and maintain metabolic homeostasis.

Product Image Gallery
Specific Protocols
>> Western Blotting Protocol >> Immunoprecipitation Protocol
>> Immunohistochemistry Protocol >> Immunofluorescence Protocol
>> Immunocytochemistry Protocol >> Flow Cytometry Protocol
>> ChIP Protocol >> ELISA Protocol
>> HPLC Protocol >> PCR Protocol
For Research Use Only, Not For Diagnostic Or Therapeutic Procedures.
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