Anti-Rad17 antibody (ab63509)


  • Product nameAnti-Rad17 antibody
    See all Rad17 primary antibodies
  • Description
    Rabbit polyclonal to Rad17
  • Tested applicationsSuitable for: IHC-P, WB, ELISA, ICC/IFmore details
  • Species reactivity
    Reacts with: Human
    Predicted to work with: Mouse
  • Immunogen

    Synthetic non-phosphopeptide derived from human Rad17 around the phosphorylation site of serine 645 P-A-SP-Q-P

  • Positive control
    • A549 cells


Associated products


Our Abpromise guarantee covers the use of ab63509 in the following tested applications.

The application notes include recommended starting dilutions; optimal dilutions/concentrations should be determined by the end user.

Application Abreviews Notes
IHC-P 1/50 - 1/100.
WB 1/500 - 1/1000. Detects a band of approximately 80 kDa (predicted molecular weight: 77 kDa).
ELISA 1/10000.
ICC/IF 1/100 - 1/500.


  • FunctionEssential for sustained cell growth, maintenance of chromosomal stability, and ATR-dependent checkpoint activation upon DNA damage. Has a weak ATPase activity required for binding to chromatin. Participates in the recruitment of the RAD1-RAD9-HUS1 complex onto chromatin, and in CHEK1 activation. May also serve as a sensor of DNA replication progression, and may be involved in homologous recombination.
  • Tissue specificityOverexpressed in various cancer cell lines and in colon carcinoma (at protein level). Isoform 2 and isoform 3 are the most abundant isoforms in non irradiated cells (at protein level). Ubiquitous at low levels. Highly expressed in testis, where it is expressed within the germinal epithelium of the seminiferous tubuli. Weakly expressed in seminomas (testicular tumors).
  • Sequence similaritiesBelongs to the rad17/RAD24 family.
  • Post-translational
    Phosphorylated. Phosphorylation on Ser-646 and Ser-656 is cell cycle-regulated, enhanced by genotoxic stress, and required for activation of checkpoint signaling. Phosphorylation is mediated by ATR upon UV or replication arrest, whereas it may be mediated both by ATR and ATM upon ionizing radiation. Phosphorylation on both sites is required for interaction with RAD1 but dispensable for interaction with RFC3 or RFC4.
  • Cellular localizationNucleus. Phosphorylated form redistributes to discrete nuclear foci upon DNA damage.
  • Information by UniProt
  • Database links
  • Alternative names
    • CCYC antibody
    • Cell cycle checkpoint protein antibody
    • Cell cycle checkpoint protein RAD17 antibody
    • FLJ41520 antibody
    • HRAD 17 antibody
    • hRad17 antibody
    • R24L antibody
    • Rad 17 antibody
    • Rad 24 antibody
    • RAD1 (S. pombe) homolog antibody
    • RAD1 homolog antibody
    • RAD17 antibody
    • RAD17 homolog (S. pombe) antibody
    • RAD17 homolog antibody
    • Rad17 like protein antibody
    • RAD17, S. pombe, homolog of antibody
    • RAD17_HUMAN antibody
    • RAD17Sp antibody
    • Rad24 antibody
    • Rad24, mouse, homolog of antibody
    • Rad24, S. cerevisiae, homolog of antibody
    • RF C activator 1 homolog antibody
    • RF C/activator 1 homolog antibody
    • RF-C/activator 1 homolog antibody
    see all

Anti-Rad17 antibody images

  • 1/50 ab63509, staining Rad17 on human breast carcinoma tissue, in the absence (left) and presence (right) of the immunizing peptide

References for Anti-Rad17 antibody (ab63509)

ab63509 has not yet been referenced specifically in any publications.

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Thank you very much for your consultation. It is rather difficult to compare the antibodies for effectiveness. Please note that the application notes on the datasheet are only an indication and can vary depending on the laboratory and the settings. The...

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Abcam guarantees this product to work in the species/application used in this Abreview.
Application Western blot
Sample Human Cell lysate - whole cell (Oral cancer)
Loading amount 20 µg
Specification Oral cancer
Gel Running Conditions Non-reduced Denaturing
Blocking step Milk as blocking agent for 1 hour(s) and 0 minute(s) · Concentration: 5% · Temperature: 4°C

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Submitted Jun 07 2011