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KIT antibody (PE)
KIT
Reactivity: Human
FACS
Host: Mouse
Monoclonal
YB5-B8
PE
Product Details anti-KIT Antibody (PE)
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Target
See all KIT Antibodies
KIT
(Mast/stem Cell Growth Factor Receptor (KIT))
Reactivity
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Human
Host
All hosts for KIT antibodies
Mouse
Clonality
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Monoclonal
Conjugate
All conjugates for KIT antibodies
This KIT antibody is conjugated to PE
Application
All applications for KIT antibodies
Flow Cytometry (FACS)
Specificity
The YB5.B8 monoclonal antibody specifically binds with human CD117 (c-kit), the 145 kDA receptor for stem cell factor (SCF) or steel factor.
Purification
The monoclonal antibody was purified utilizing affinity chromatography and unreacted dye was removed from the product.
Clone
YB5-B8
Isotype
IgG1 kappa
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Alternatives
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Application Details
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Application Notes
Optimal working dilution should be determined by the investigator.
Restrictions
For Research Use only
Handling
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Format
Liquid
Buffer
Phosphate-buffered aqueous solution, ≤0.09 % Sodium azide, may contain carrier protein/stabilizer, ph7.2.
Storage
4 °C
Storage Comment
The product should be stored undiluted at 4°C and should be protected from prolonged exposure to light. Do not freeze.
Target Details for KIT
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Target
KIT
(Mast/stem Cell Growth Factor Receptor (KIT))
Alternative Name
CD117 (KIT Products )
Background
The YB5.B8 monoclonal antibody specifically binds with human CD117 (c-kit), the 145 kDA receptor for stem cell factor (SCF) or steel factor. This tyrosine kinase protein is expressed mainly on hematopoietic progenitor, mast cells, acute myeloid leukemia cells (AML). CD117 activation promotes proliferation and cell differentiation on these cell subtypes. A lack or defect of SCF can lead to a decrease in number of hematopoietic progenitor cells and severe anemia.
Gene ID
3815
UniProt
P10721
Pathways
RTK Signaling , Fc-epsilon Receptor Signaling Pathway , EGFR Signaling Pathway , Neurotrophin Signaling Pathway , Sensory Perception of Sound , Stem Cell Maintenance , Production of Molecular Mediator of Immune Response , Regulation of long-term Neuronal Synaptic Plasticity
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