| Code | CSB-RA010418A09me2HU |
| Size | US$210 |
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| Application | Recommended Dilution |
|---|---|
| WB | 1:500-1:5000 |
| IF | 1:30-1:200 |
Histone H3 dimethylation at lysine 9 (H3K9me2) represents a critical epigenetic mark associated with transcriptional repression and heterochromatin formation. This modification plays essential roles in gene silencing, cellular differentiation, and maintaining genome stability, making it a key target for researchers investigating chromatin dynamics and epigenetic regulation.
This recombinant monoclonal antibody, clone 1A10, targets the dimethylated lysine 9 residue of Histone H3.1 with the precision that only sequence-defined recombinant technology can provide. Developed in rabbit and raised against a synthesized peptide encompassing the H3K9me2 epitope, this antibody delivers the lot-to-lot consistency essential for longitudinal studies and reproducible experimental workflows. The defined sequence ensures you can confidently compare results across experiments without the variability inherent to traditional polyclonal preparations.
Validation studies demonstrate reliable performance across multiple applications. Western blot analysis of mouse liver tissue reveals clean detection at the expected 15 kDa band, with the observed molecular weight matching the predicted size precisely, confirming specific recognition of the target histone. For cellular localization studies, immunofluorescence staining in HeLa cells shows characteristic nuclear signal patterns consistent with chromatin-associated H3K9me2 distribution, with effective detection achieved at dilutions around 1:56.
The antibody is supplied in a stabilized liquid format with glycerol for convenient long-term storage and is compatible with ELISA, Western blot, and immunofluorescence applications. Whether you are mapping epigenetic landscapes, investigating chromatin remodeling mechanisms, or studying gene silencing pathways, this antibody provides a dependable tool for advancing your research in epigenetics and nuclear signaling.
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