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Aconitase 1 antibody

GTX128976
GeneTex
ApplicationsWestern Blot, ImmunoHistoChemistry, ImmunoHistoChemistry Paraffin
Product group Antibodies
TargetACO1
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Overview

  • Supplier
    GeneTex
  • Product Name
    Aconitase 1 antibody
  • Delivery Days Customer
    9
  • Application Supplier Note
    WB: 1:500-1:3000. IHC-P: 1:100-1:1000. *Optimal dilutions/concentrations should be determined by the researcher.Not tested in other applications.
  • Applications
    Western Blot, ImmunoHistoChemistry, ImmunoHistoChemistry Paraffin
  • Certification
    Research Use Only
  • Clonality
    Polyclonal
  • Concentration
    1 mg/ml
  • Conjugate
    Unconjugated
  • Gene ID48
  • Target name
    ACO1
  • Target description
    aconitase 1
  • Target synonyms
    ACONS, HEL60, IREB1, IREBP, IREBP1, IRP1, cytoplasmic aconitate hydratase, aconitase 1, soluble, aconitate hydratase, cytoplasmic, citrate hydro-lyase, cytoplasmic aconitase, cytosplasmic aconitase, epididymis luminal protein 60, epididymis secretory sperm binding protein, ferritin repressor protein, iron regulatory protein 1, iron-responsive element-binding protein 1, soluble aconitase
  • Host
    Rabbit
  • Isotype
    IgG
  • Protein IDP21399
  • Protein Name
    Cytoplasmic aconitate hydratase
  • Scientific Description
    Aconitase 1, also known as iron regulatory element binding protein 1 (IREB1), is a cytosolic protein which binds to iron-responsive elements (IREs). IREs are stem-loop structures found in the 5 UTR of ferritin mRNA, and in the 3 UTR of transferrin receptor mRNA. The iron-induced binding to the IRE results in repression of translation of ferritin mRNA, and inhibition of degradation of the otherwise rapidly degrading transferrin receptor mRNA. Thus, IREB1 plays a central role in cellular iron homeostasis. It was also shown to have aconitase activity, and hence grouped with the aconitase family of enzymes. [provided by RefSeq]
  • Storage Instruction
    -20°C or -80°C,2°C to 8°C
  • UNSPSC
    12352203

References

  • Jiang C, Ward NP, Prieto-Farigua N, et al. A CRISPR screen identifies redox vulnerabilities for KEAP1/NRF2 mutant non-small cell lung cancer. Redox Biol. 2022,54:102358. doi: 10.1016/j.redox.2022.102358
    Read this paper
  • Bailey ML, Tieu D, Habsid A, et al. Paralogous synthetic lethality underlies genetic dependencies of the cancer-mutated gene STAG2. Life Sci Alliance. 2021,4(11). doi: 10.26508/lsa.202101083
    Read this paper