Date published: 2026-5-23

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ss/ds DNA marker Antibody (3H12): sc-73065

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  • ss/ds DNA marker Antibody (3H12) is a mouse monoclonal IgG2b ss/ds DNA marker antibody provided at 100 µg/ml
  • raised against calf thymus DNA
  • recommended for detection of single or double stranded eukaryotic DNA of mammalian origin by WB
  • At present, we have not yet completed the identification of the preferred secondary detection reagent(s) for ss/ds DNA marker Antibody (3H12). This work is in progress.
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    ss/ds DNA marker Antibody (3H12) is a mouse monoclonal IgG2b antibody that detects the ss/ds DNA marker protein of mammalian origin by western blotting (WB). Anti-ss/ds DNA marker antibody (3H12) is available as the non-conjugated format. Deoxyribonucleic acid (DNA) plays a crucial role in storing and transmitting genetic information, serving as the blueprint for the development and function of all known living organisms. The structure of DNA, which typically exists as a double-stranded molecule forming a double helix, is vital for stability and function. This helical structure allows for specific pairing of nucleotide bases—adenine with thymine and guanine with cytosine—ensuring accurate replication and transcription processes. When DNA unwinds, single-stranded forms become essential for various cellular processes, including replication and transcription, as proteins can access the genetic code. ss/ds DNA marker (3H12) antibody detects both single-stranded and double-stranded DNA in various samples, making ss/ds DNA marker (3H12) monoclonal antibody an invaluable tool for studying genetic material and its functions.

    For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.

    Alexa Fluor® is a trademark of Molecular Probes Inc., OR., USA

    LI-COR® and Odyssey® are registered trademarks of LI-COR Biosciences

    ss/ds DNA marker Antibody (3H12) References:

    1. Molecular structure of nucleic acids; a structure for deoxyribose nucleic acid.  |  WATSON, JD. and CRICK, FH. 1953. Nature. 171: 737-8. PMID: 13054692
    2. Unraveling DNA helicases. Motif, structure, mechanism and function.  |  Tuteja, N. and Tuteja, R. 2004. Eur J Biochem. 271: 1849-63. PMID: 15128295
    3. Single-stranded adenine-rich DNA and RNA retain structural characteristics of their respective double-stranded conformations and show directional differences in stacking pattern.  |  Isaksson, J., et al. 2004. Biochemistry. 43: 15996-6010. PMID: 15609994
    4. DNA mechanics.  |  Benham, CJ. and Mielke, SP. 2005. Annu Rev Biomed Eng. 7: 21-53. PMID: 16004565
    5. Computational structural analysis: multiple proteins bound to DNA.  |  Tomovic, A. and Oakeley, EJ. 2008. PLoS One. 3: e3243. PMID: 18802470
    6. Rapid Tagging of Human Proteins with Fluorescent Reporters by Genome Engineering using Double-Stranded DNA Donors.  |  Paix, A., et al. 2019. Curr Protoc Mol Biol. 129: e102. PMID: 31710422
    7. Unambiguous Discrimination of Multiple Protein Biomarkers by Nanopore Sensing with Double-Stranded DNA-Based Probes.  |  Fang, Z., et al. 2020. Anal Chem. 92: 1730-1737. PMID: 31869203
    8. Repair of single-stranded DNA nicks, gaps, and loops in mammalian cells.  |  Ayares, D., et al. 1987. Mol Cell Biol. 7: 1656-62. PMID: 3474515
    9. Studies on the functions of DNA helicase I and DNA helicase II of Escherichia coli.  |  Klinkert, MQ., et al. 1980. J Biol Chem. 255: 9746-52. PMID: 6107294
    10. Protein-DNA recognition.  |  Pabo, CO. and Sauer, RT. 1984. Annu Rev Biochem. 53: 293-321. PMID: 6236744
    11. Open complex formation by Escherichia coli RNA polymerase: the mechanism of polymerase-induced strand separation of double helical DNA.  |  deHaseth, PL. and Helmann, JD. 1995. Mol Microbiol. 16: 817-24. PMID: 7476180
    12. Instability and decay of the primary structure of DNA.  |  Lindahl, T. 1993. Nature. 362: 709-15. PMID: 8469282

    Ordering Information

    Product NameCatalog #UNITPriceQtyFAVORITES

    ss/ds DNA marker Antibody (3H12)

    sc-73065
    100 µg/ml
    $322.00