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JAK2(Tyr1007+Tyr1008) Antibody, FITC Conjugated

Applications

  • WB
  • FCM
  • IF(IHC-P)
  • IF(IHC-F)
  • IF(ICC)

Reactivity

  • Human
  • Mouse
  • Rat
  • Rabbit
  • Zebrafish

Predicted Reactivity

  • Pig
  • Chicken
Overview
Catalog # bs-2485R-FITC
Product Name JAK2(Tyr1007+Tyr1008) Antibody, FITC Conjugated
Applications WB, FCM, IF(IHC-P), IF(IHC-F), IF(ICC)
Reactivity Human, Mouse, Rat, Rabbit, Zebrafish
Predicted Reactivity Pig, Chicken
Specifications
Conjugation FITC
Host Rabbit
Source KLH conjugated synthetic phosphopeptide derived from human JAK2 around the phosphorylation site of Tyr1007/1008
Modification Site Tyr1007+Tyr1008
Clonality Polyclonal
Isotype IgG
Concentration 1ug/ul
Purification Purified by Protein A.
Storage Buffer Aqueous buffered solution containing 0.01M TBS (pH 7.4) with 1% BSA, 0.03% Proclin300 and 50% Glycerol.
Storage Condition Store at -20°C. Aliquot into multiple vials to avoid repeated freeze-thaw cycles.
Target
Gene ID 3717
Swiss Prot O60674
Subcellular location Cytoplasm, Nucleus, Cell membrane
Synonyms JAK2Tyr1007/1008; Tyrosine protein kinase JAK2; JAK 2; JAK-2; JAK2; JAK2_HUMAN; Janus Activating Kinase 2; Janus Kinase 2; JTK 10; JTK10; OTTHUMP00000043260; Tyrosine-protein kinase JAK2; Tyrosine protein kinase JAK2.
Background JAK2 (Janus Activating Kinase 2) is a tyrosine kinase of the non-receptor type, that associates with the intracellular domains of cytokine receptors; JAK2 is the predominant JAK kinase activated in response to several growth factors and cytokines such as IL-3, GM-CSF and erythropoietin; it has been found to be constitutively associated with the prolactin receptor and is required for responses to gamma interferon. Ligand binding to a variety of cell surface receptors (e.g., cytokine, growth factor, GPCRs) leads to an association of those receptors with JAK proteins, which are then activated via phosphorylation on tyrosines 1007 and 1008 in the kinase activation loop. Activated JAK proteins phosphorylate and activate STAT (signal transducers and activators of transcription) proteins, which then dimerize and translocate to the nucleus. Once in the nucleus, STAT proteins bind to DNA and modify the transcription of various genes.
Application Dilution
WB 1:300-5000
FCM 1:20-100
IF(IHC-P) 1:50-200
IF(IHC-F) 1:50-200
IF(ICC) 1:50-200