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MAGOH (N-15) Antibody: sc-48239

 |  Datasheet
  • goat polyclonal IgG, 200µg/ml
  • epitope mapping at the N-terminus of MAGOH of human origin
  • recommended for detection of MAGOH and MAGOHB of human and mouse origin and MAGOH and LOC690303 of rat origin by WB, IF and ELISA; also reactive with additional species, including equine, canine, bovine, porcine and avian
  • TransCruz reagent for Gel Supershift and ChIP applications, sc-48239 X, 200 µg/0.1 ml
  • blocking peptide, sc-48239 P
 
Additional MAGOH Antibodies ...
 
Ordering Information
Recommended Support Products:
(click button of application of choice)
WB   IF   Gel Shift   ChIP  
 
Species Gene Name Gene ID Chromosome Location Isoform (mRNA) Accession # Protein Accession # OMIM™ Number
Human MAGOH 4116 1p32.3 NM_002370 P61326
602603
Mouse Magoh 17149 4 C7 P61327
N/A
Mouse Magohb 66441 6 F3 Q9CQL1
N/A
 
Set Currency

 Ordering Information
Product NameCatalog #UnitPriceQtyAddFavorites
MAGOH (N-15) sc-48239 200 µg/ml $279
MAGOH (N-15) P sc-48239 P
(peptide)
100 µg/0.5 ml $61
MAGOH (N-15) X sc-48239 X 200 µg/0.1 ml $279
 WB Positive Control Cell Lysates (click product name for more information)
Product NameCatalog #UnitPriceQtyAddFavorites
Ramos nuclear extract sc-2153 1000 µg $143
BJAB nuclear extract sc-2145 1000 µg $143
HeLa nuclear extract sc-2120 1000 µg $143
HL-60 nuclear extract sc-2147 1000 µg $143
MOLT-4 nuclear extract sc-2151 1000 µg $143
HeLa Whole Cell Lysate sc-2200 500 µg/200 µl $104
Ramos Cell Lysate sc-2216 500 µg/200 µl $104

MAGOH Background Information
MAGOH, the human homolog of Drosophila mago nashi, is required for embryo development. MAGOH is ubiquitously expressed in adult tissues. It has an unusual structure consiting of an extremely flat, six-stranded anti-parallel ∫ sheet packed next to two helices. MAGOH interacts with the Y14 protein to form a complex that plays a crucial role in postsplicing processing (including nuclear export and cytoplasmic localization of the mRNA) and in the nonsense-mediated mRNA decay (NMD) surveillance process. The MAGOH-Y14 complex remains persistently associated in the same position on the mRNA after its export to the cytoplasm and requires translation of the mRNA for removal. This complex may illustrate the mechanism of the pre-mRNA splicing machinery for forming a stable exon-exon junction complex-mRNA at splice junctions.