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FOXD1 (C-19) Antibody: sc-47585

 |  Datasheet
  • goat polyclonal IgG, 200µg/ml
  • epitope mapping at the C-terminus of FOXD1 of human origin
  • recommended for detection of Forkhead box protein D1 of mouse, rat and human origin by WB, IF and ELISA
  • TransCruz reagent for Gel Supershift and ChIP applications, sc-47585 X, 200 µg/0.1 ml
  • blocking peptide, sc-47585 P
 
Additional FOX Antibodies ...
 
Ordering Information
Recommended Support Products:
(click button of application of choice)
WB   IF   Gel Shift   ChIP   siRNA  
 
Species Gene Name Gene ID Chromosome Location Isoform (mRNA) Accession # Protein Accession # OMIM™ Number
Human FOXD1 2297 5q13.2 NM_004472 Q16676
601091
Mouse Foxd1 15229 13 D1 Q61345
N/A
 
Set Currency

 Ordering Information
Product NameCatalog #UnitPriceQtyAddFavorites
FOXD1 (C-19) sc-47585 200 µg/ml $279
FOXD1 (C-19) P sc-47585 P
(peptide)
100 µg/0.5 ml $61
FOXD1 (C-19) X sc-47585 X 200 µg/0.1 ml $279
 siRNA Gene Silencers (click product name for more information)
Product NameCatalog #UnitPriceQtyAddFavorites
FOXD1 siRNA (h) sc-60649 10 µM $258
FOXD1 siRNA (m) sc-60650 10 µM $258
FOXD1 (h)-PR sc-60649-PR 10 µM $23
FOXD1 (m)-PR sc-60650-PR 10 µM $23
 shRNA Plasmids (click product name for more information)
Product NameCatalog #UnitPriceQtyAddFavorites
FOXD1 shRNA Plasmid (h) sc-60649-SH 20 µg $520
FOXD1 shRNA Plasmid (m) sc-60650-SH 20 µg $520
 shRNA Lentiviral Particles (click product name for more information)
Product NameCatalog #UnitPriceQtyAddFavorites
FOXD1 shRNA (h) Lentiviral Particles sc-60649-V 200 µl $625
FOXD1 shRNA (m) Lentiviral Particles sc-60650-V 200 µl $625

FOXD1 Background Information
The FOX family of transcription factors share a common DIUA binding domain termed a winged-helix or forkhead domain. Many FOX proteins play important roles in development, metabolism, cancer and aging. FOXD1 (also designated brain factor 2 or BF-2) is involved in regulating inflammation as well as kidney and retinal development. FOXD1 regulates the activity of NFAT and NF˚B. Deficiency of FOXD1 results in multiorgan systemic inflammation, exaggerated Th cell-derived cytokine production, and T cell proliferation in autogolgous MLRs. In kidneys, FOXD1 controls the production of signals required for the normal transition of induced mesenchyme into tubular epithelium and full growth and branching of the collecting system. Deletion of FOXD1 results in renal abnormalities. FOXD2 acts as a modulator of T cell activation.