
Thermo Fisher Scientific CD95 (APO-1/Fas) Monoclonal Antibody (SM1/23), FITC, eBioscience
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Applications
Tested Dilution
Publications
Flow Cytometry (Flow)
Assay-Dependent
View 2 publications 2 publications
Product Specifications
Species Reactivity
Human
Published species
Human
Host/Isotype
Mouse / IgG2b
Recommended Isotype Control
Mouse IgG2b kappa Isotype Control (eBMG2b), FITC, eBioscience™
Class
Monoclonal
Type
Antibody
Clone
SM1/23
Conjugate
FITC FITC FITC
View additional formats
Excitation/Emission Max
498/517 nm View spectra
Form
Liquid
Concentration
10 µL/Test
Purification
Affinity chromatography
Storage buffer
TBS, pH 7.2-7.4, with 1% BSA
Contains
0.02% sodium azide
Storage conditions
4° C, store in dark
Shipping conditions
Ambient (domestic); Wet ice (international)
RRID
AB_10597907
Product Specific Information
Description: BMS140 is suitable as primary antibody for staining in FACS analysis.
BMS140FI can be used for direct staining of cells. BMS140BT can be used in a two-step procedure using the biotin-(strept-)avidin system.
Functional studies:
BMS140 was found to block induction of apoptosis induced by clone SM1/1 or other commercial anti APO-1 antibodies.
Optimal dilutions should be determined by the individual laboratory for each application.
Applications Tested: Flow Cytometry.
Purity: >95%.
Excitation: 488 nm; Emission: 520 nm; Laser: Blue Laser
Target Information
FAS (Fas, CD95, APO-1) is a 46 kDa transmembrane glycoprotein that functions as a cell death receptor of the TNFR (tumor necrosis factor receptor) superfamily. FAS also exists in a soluble form that weight approximately 26kDa. Stimulation of FAS results in aggregation of its intracellular FAS-associated death domains (FADD), formation of the death-inducing signaling complex (DISC) and activation of caspases. The auto-proteolytic processing of the caspases in the complex trigger a downstream cascade that leads to apoptosis. FAS has been shown to activate NF-kappaB, MAPK3/ERK1, MAPK8/JNK, and is involved in transducing the proliferating signals in normal diploid fibroblast and T cells. At least eight alternatively spliced transcript variants encoding seven distinct isoforms have been described. The isoforms lacking the transmembrane domain may negatively regulate the apoptosis mediated by the full-length isoform. The Fas/Fas ligand system has been shown to play a role in a number of human diseases such as AIDS, hepatitis and cancer. It is also assumed that induction of apoptosis through FAS ligand pathway is predominantly involved in anti-viral immune responses.
For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.
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