| Code | CSB-RA316735MA1HU |
| Size | US$210 |
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| Application | Recommended Dilution |
|---|---|
| FC | 1:20-1:500 |
Ubiquitin C represents one of the primary sources of ubiquitin in mammalian cells, encoding a polyubiquitin precursor that is processed into individual ubiquitin monomers. These 76-amino acid proteins serve as the fundamental currency of the ubiquitin-proteasome system, regulating protein degradation, DNA repair, cell cycle progression, and signal transduction. Given ubiquitin's central role in cellular homeostasis, reliable detection tools are essential for researchers investigating everything from neurodegenerative disease mechanisms to epigenetic regulation.
This recombinant monoclonal antibody, clone 6G8, offers the reproducibility that ubiquitin research demands. Because recombinant antibodies are produced from defined genetic sequences rather than hybridoma supernatants, researchers can expect consistent performance across experiments and between lot numbers—a critical consideration for longitudinal studies or when establishing standardized protocols. The mouse IgG2a isotype and affinity-chromatography purification further contribute to reliable, low-background results.
Validation by flow cytometry demonstrates effective detection of intracellular ubiquitin in human MCF7 breast cancer cells. Using a fixation and permeabilization protocol with 4% formaldehyde and 0.2% Triton X-100, the antibody produced clear separation from isotype control at 1:50 dilution, with recommended working dilutions ranging from 1:20 to 1:500 depending on experimental conditions. This flexibility allows researchers to optimize signal-to-noise ratios for their specific instrumentation and sample types.
Whether you are mapping ubiquitin dynamics in neuronal stress responses, characterizing post-translational modification patterns in cancer models, or investigating chromatin-associated ubiquitin signaling, this antibody provides a sequence-defined tool validated for human cell line analysis in flow cytometry and ELISA applications.
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