SKU: WM1002 Categories: ,

GFAP Monoclonal Antibody [5C8]

Price range: $268.00 through $328.00

SKU: WM1002-50
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Product details

Background:
This gene encodes one of the major intermediate filament proteins of mature astrocytes. It is used as a marker to distinguish astrocytes from other glial cells during development. Mutations in this gene cause Alexander disease, a rare disorder of astrocytes in the central nervous system. Alternative splicing results in multiple transcript variants encoding distinct isoforms. [provided by RefSeq, Oct 2008],

Specifications

TargetGFAP
ReactivityHuman, Mouse, Rat
ApplicationsWB, IHC, IF
MW(Calculated)
MW(Observed)45kD
Host SpeciesMouse
Isotype
Conjugate/ModificationUnmodified
Modification
Recommended Dilution RatioWB 1:2000-5000; IF 1:200; IHC 1:50-300 / Note: For IHC, we suggest antigen retrieval with TE buffer pH 9.0 (Cat#YS0004)
FormulationPBS, pH 7.4, containing 0.5%BSA, 0.02% sodium azide as Preservative and 50% Glycerol.
Source
PurificationThe antibody was affinity-purified from mouse ascites by affinity-chromatography using specific immunogen.
Purity
Storage-15°C to -25°C/1 year(Do not lower than -25°C)
Concentration
ClonalityMonoclonal
Clone Number5C8
ImmunogenSynthetic Peptide of GFAP
Sequence
SpecificityThe antibody detects endogenous GFAP proteins.
Gene NameGFAP
Protein NameGlial fibrillary acidic protein
Other NameGFAP; / Glial fibrillary acidic protein; / GFAP
SpeciesHuman
Gene ID-12670
UniprotP14136,
Species.1Mouse
Gene ID-214580
Uniprot.1P03995,
Species.2Rat
Gene ID-324387
Uniprot.2P47819
Organism-4
Gene ID-4
SwissProt-4
BackgroundThis gene encodes one of the major intermediate filament proteins of mature astrocytes. It is used as a marker to distinguish astrocytes from other glial cells during development. Mutations in this gene cause Alexander disease, a rare disorder of astrocytes in the central nervous system. Alternative splicing results in multiple transcript variants encoding distinct isoforms. [provided by RefSeq, Oct 2008],
Cellular LocalizationCytoplasm . Associated with intermediate filaments. .
Tissue ExpressionExpressed in cells lacking fibronectin.
Signaling_pathwayEnvironmental Information Processing >> Signal transduction >> JAK-STAT signaling pathway
Research Areas>>JAK-STAT signaling pathway
FunctionAlternative products:Isoforms differ in the C-terminal region which is encoded by alternative exons,Disease:Defects in GFAP are a cause of Alexander disease (ALEXD) [MIM:203450]. Alexander disease is a rare disorder of the central nervous system. It is a progressive leukoencephalopathy whose hallmark is the widespread accumulation of Rosenthal fibers which are cytoplasmic inclusions in astrocytes. The most common form affects infants and young children, and is characterized by progressive failure of central myelination, usually leading to death usually within the first decade. Infants with Alexander disease develop a leukoencephalopathy with macrocephaly, seizures, and psychomotor retardation. Patients with juvenile or adult forms typically experience ataxia, bulbar signs and spasticity, and a more slowly progressive course.,Function:GFAP, a class-III intermediate filament, is a cell-specific marker that, during the development of the central nervous system, distinguishes astrocytes from other glial cells.,online information:GFAP entry,similarity:Belongs to the intermediate filament family.,subcellular location:Associated with intermediate filaments.,subunit:Interacts with SYNM (By similarity). Isoform 3 interacts with PSEN1 (via N-terminus).,tissue specificity:Expressed in cells lacking fibronectin.,
RRID
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