For immunochemical detection of H3K18Me1
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Histone H3K18Me1 Monoclonal Antibody (RM167)

Item No. 32149

Technical Information
Synonyms
  • Monomethylated Histone H3 Lysine 18
Immunogen
Peptide corresponding to H3K18Me1
Clone Designation
RM167
100 µg of protein A-affinity purified monoclonal antibody
Storage Buffer
PBS with 50% glycerol, 1% BSA, and 0.09% sodium azide
Host
Rabbit
Isotype
IgG
Applications
ELISA, multiplex-based assays, WB
Cross Reactivity
(+) H3K18Me1(-) Unmodified H3K18(-) H3K18Me2(-) H3K4Me1(-) H3K4Me2(-) H3K4Me3(-) H3K9Me1(-) H3K9Me2(-) H3K9Me3(-) H3K14Me2(-) H3K23Me1(-) H3K23Me2(-) H3K27Me1(-) H3K27Me2(-) H3K27Me3(-) H3K36Me1(-) H3K36Me2(-) H3K36Me3(-) H3K56Me1(-) H3K79Me1(-) H3K79Me2(-) H3K79Me3
Species Reactivity
(+) Vertebrates
Shipping & Storage Information
Storage
-20°C
Shipping
Wet ice in continental US; may vary elsewhere
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Certificates of Analysis & Batch Specific Data

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    Product Description

    Histone H3 is a nuclear protein and a component of the nucleosome core, a basic unit of chromatin, that is essential for organizing genomic DNA in eukaryotic nuclei.1 It is a globular protein that contains an unstructured N-terminal tail that extends outside of the nucleosome core and is subject to various post-translational modifications (PTMs), including methylation, phosphorylation, acetylation, and citrullination.1,2 Monomethylation of histone H3 at lysine 18 (H3K18Me1) has a slower turnover rate than all other histone H3 monomethylation sites with gene-activating function.3,4 Cayman's Histone H3K18Me1 Monoclonal Antibody (RM167) can be used for ELISA, multiplex-based assays, and Western blot (WB) applications.

    WARNING This product is not for human or veterinary use.

    References & Product Citations
    Product Description References

    1. Hyun, K., Jeon, J., Park, K., et alWriting, erasing and reading histone lysine methylations. Exp. Mol. Med. 49(4), e324 (2017).

    2. Sharda, A., Amnekar, R.V., Natu, A., et alHistone posttranslational modifications: Potential role in diagnosis, prognosis, and therapeutics of cancer. Prognostic Epigenetics 15, 351-373 (2019).

    3. Zee, B.M., Levin, R.S., Xu, B., et alIn vivo residue-specific histone methylation dynamics. The Journal of Biological Chemisty 285(5), 3341-3350 (2010).

    4. Xu, Y.-M., Du, J.-Y., and Lau, A.T.Y. Posttranslational modifications of human histone H3: An update. Proteomics 14(17-18), 2047-2060 (2014).