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c-Myc/N-Myc (D3N8F) Rabbit Monoclonal Antibody #13987

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  • WB
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  • F
  • ChIP
  • C&R
  • C&T

    Product Specifications

    REACTIVITY H M R Mk
    SENSITIVITY Endogenous
    MW (kDa) 57-65
    Source/Isotype Rabbit IgG
    Application Key:
    • WB-Western Blotting 
    • IF-Immunofluorescence 
    • F-Flow Cytometry 
    • ChIP-Chromatin Immunoprecipitation 
    • C&R-CUT & RUN 
    • C&T-CUT & Tag 
    Species Cross-Reactivity Key:
    • H-Human 
    • M-Mouse 
    • R-Rat 
    • Mk-Monkey 

    Product Information

    Product Usage Information

    For optimal ChIP and ChIP-seq results, use 10 μl of antibody and 10 μg of chromatin (approximately 4 x 106 cells) per IP. This antibody has been validated using SimpleChIP® Enzymatic Chromatin IP Kits.

    The CUT&RUN dilution was determined using CUT&RUN Assay Kit #86652.

    The CUT&Tag dilution was determined using CUT&Tag Assay Kit #77552.

    Application Dilution
    Western Blotting 1:1000
    Immunofluorescence (Immunocytochemistry) 1:1600
    Flow Cytometry (Fixed/Permeabilized) 1:400
    Chromatin IP 1:50
    Chromatin IP-seq 1:50
    CUT&RUN 1:50
    CUT&Tag 1:50

    Storage

    Supplied in 10 mM sodium HEPES (pH 7.5), 150 mM NaCl, 100 µg/ml BSA, 50% glycerol and less than 0.02% sodium azide. Store at –20°C. Do not aliquot the antibody.

    For a carrier free (BSA and azide free) version of this product see product #83277.

    Protocol

    Specificity / Sensitivity

    c-Myc/N-Myc (D3N8F) Rabbit Monoclonal Antibody recognizes endogenous levels of total c-Myc and N-Myc proteins.

    Species Reactivity:

    Human, Mouse, Rat, Monkey

    Source / Purification

    Monoclonal antibody is produced by immunizing animals with recombinant protein specific to a central region within human c-Myc protein.

    Background

    Members of the Myc/Max/Mad network function as transcriptional regulators with roles in various aspects of cell behavior, including proliferation, differentiation, and apoptosis (1). These proteins share a common basic-helix-loop-helix leucine zipper (bHLH-ZIP) motif required for dimerization and DNA-binding. Max was originally discovered based on its ability to associate with c-Myc and found to be required for the ability of Myc to bind DNA and activate transcription (2). Subsequently, Max has been viewed as a central component of the transcriptional network, forming homodimers as well as heterodimers with other members of the Myc and Mad families (1). The association between Max and either Myc or Mad can have opposing effects on transcriptional regulation and cell behavior (1). The Mad family consists of four related proteins; Mad1, Mad2 (Mxi1), Mad3, and Mad4, and the more distantly related members of the bHLH-ZIP family, Mnt and Mga. Like Myc, the Mad proteins are tightly regulated with short half-lives. In general, Mad family members interfere with Myc-mediated processes, such as proliferation, transformation, and prevention of apoptosis by inhibiting transcription (3,4).

    Alternate Names

    avian myelocytomatosis viral oncogene homolog; BHLHE37; BHLHE39; c-Myc; Class E basic helix-loop-helix protein 37; Class E basic helix-loop-helix protein 39; MODED; MRTL; MYC; Myc proto-oncogene protein; MYC proto-oncogene, bHLH transcription factor; myc-related translation/localization regulatory factor; MYCC; MYCN; MYCN proto-oncogene, bHLH transcription factor; N-myc; N-myc proto-oncogene protein; neuroblastoma MYC oncogene; neuroblastoma-derived v-myc avian myelocytomatosis viral related oncogene; NMYC; ODED; oncogene NMYC; pp65/67; Proto-oncogene c-Myc; Transcription factor p64; v-myc avian myelocytomatosis viral oncogene homolog; v-myc avian myelocytomatosis viral oncogene neuroblastoma derived homolog; v-myc avian myelocytomatosis viral related oncogene, neuroblastoma derived; v-myc myelocytomatosis viral oncogene homolog; v-myc myelocytomatosis viral oncogene homolog (avian); v-myc myelocytomatosis viral related oncogene, neuroblastoma derived (avian)

    For Research Use Only. Not for Use in Diagnostic Procedures.
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    SimpleChIP is a registered trademark of Cell Signaling Technology, Inc.
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