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Anti-Rad14 antibody (ab43577)

Price and availability

257 980 ₸

Availability

Order now and get it on Thursday February 25, 2021

Key features and details

  • Mouse polyclonal to Rad14
  • Suitable for: WB
  • Reacts with: Saccharomyces cerevisiae
  • Isotype: IgG

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Overview

  • Product name

    Anti-Rad14 antibody
  • Description

    Mouse polyclonal to Rad14
  • Host species

    Mouse
  • Tested applications

    Suitable for: WBmore details
  • Species reactivity

    Reacts with: Saccharomyces cerevisiae
  • Immunogen

    Recombinant fragment: GVVDGSKRDA SVLDKRPTDR IRPSIRKQDY IEYDFATMQN LNGGYINPKD KLPNSDFTDD QEFESEFGSK KQKTLQDWKK EQLERKMLYE NAPPPEHISK , corresponding to amino acids 88-187 of Saccharomyces cerevisiae Rad14

    Run BLAST with BLAST the sequence with ExPASy Run BLAST with BLAST the sequence with NCBI
  • General notes


    This antibody was raised by a genetic immunization technique. Genetic immunization can be used to generate antibodies by directly delivering antigen-coding DNA into the animal, rather than injecting a protein or peptide (Tang et al. PubMed: 1545867; Chambers and Johnston PubMed 12910245; Barry and Johnston PubMed: 9234514). The animal's cells produce the protein, which stimulates the animal's immune system to produce antibodies against that particular protein. A vector coding for a partial fusion protein was used for genetic immunisation of a mouse and the resulting serum was tested in Western blot against an E.coli lysate containing that partial fusion protein. Genetic immunization offers enormous advantages over the traditional protein-based immunization method. DNA is faster, cheaper and easier to produce and can be produced by standard techniques readily amenable to automation. Furthermore, the antibodies generated by genetic immunization are usually of superior quality with regard to specificity, affinity and recognizing the native protein.

Properties

  • Form

    Liquid
  • Storage instructions

    Shipped at 4°C. Upon delivery aliquot and store at -20°C. Avoid freeze / thaw cycles.
  • Storage buffer

    Constituents: Whole serum, 50% Glycerol
  • Concentration information loading...
  • Purity

    Whole antiserum
  • Primary antibody notes

    This antibody was raised by a genetic immunization technique. Genetic immunization can be used to generate antibodies by directly delivering antigen-coding DNA into the animal, rather than injecting a protein or peptide (Tang et al. PubMed: 1545867; Chambers and Johnston PubMed 12910245; Barry and Johnston PubMed: 9234514). The animal's cells produce the protein, which stimulates the animal's immune system to produce antibodies against that particular protein. A vector coding for a partial fusion protein was used for genetic immunisation of a mouse and the resulting serum was tested in Western blot against an E.coli lysate containing that partial fusion protein. Genetic immunization offers enormous advantages over the traditional protein-based immunization method. DNA is faster, cheaper and easier to produce and can be produced by standard techniques readily amenable to automation. Furthermore, the antibodies generated by genetic immunization are usually of superior quality with regard to specificity, affinity and recognizing the native protein.
  • Clonality

    Polyclonal
  • Isotype

    IgG
  • Research areas

    • Epigenetics and Nuclear Signaling
    • DNA / RNA
    • DNA Damage & Repair
    • Nucl. Excision Repair
    • Microbiology
    • Organism
    • Eukaryotic Microorganism
    • Yeast
    • Saccharomyces spp

Images

Please note: All products are "FOR RESEARCH USE ONLY. NOT FOR USE IN DIAGNOSTIC PROCEDURES"
For licensing inquiries, please contact partnerships@abcam.com

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