| Code | CSB-RA010418A128me1HU |
| Size | US$210 |
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| Application | Recommended Dilution |
|---|---|
| WB | 1:500-1:2000 |
Histone H3.1 serves as a fundamental component of chromatin structure and plays a central role in epigenetic regulation through its diverse post-translational modifications. Mono-methylation at arginine 128 represents a specific modification state that contributes to the complex histone code governing gene expression, DNA repair, and chromatin remodeling. Studying these precise modification patterns is essential for researchers investigating epigenetic mechanisms in development, disease progression, and cellular differentiation.
This recombinant monoclonal antibody, clone 4G12, offers researchers the consistency and reliability that sequence-defined production provides. Unlike traditional hybridoma-derived antibodies, recombinant technology ensures that every lot delivers identical performance characteristics, eliminating the variability that can compromise longitudinal studies or multi-site collaborations. The rabbit IgG format, combined with affinity chromatography purification, yields a reagent optimized for specificity and minimal background interference.
Validation studies confirm robust performance in Western blot applications, where the antibody successfully detected mono-methylated Histone H3.1 at the expected 15 kDa molecular weight in both HepG2 hepatocellular carcinoma and SH-SY5Y neuroblastoma cell lysates. This demonstrated performance across distinct human cell lineages provides confidence when working with diverse experimental models. The recommended working dilution range of 1:500 to 1:2000 offers flexibility to optimize signal-to-noise ratios across different sample preparations. Cross-species reactivity with human and mouse samples extends the utility of this antibody for researchers working with murine model systems.
For investigators exploring histone methylation dynamics, chromatin biology, or the broader landscape of epigenetic and nuclear signaling pathways, this antibody provides a dependable tool for detecting this specific arginine methylation mark with experimental reproducibility.
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