| Application | Recommended Dilution |
|---|---|
| WB | 1:500-1:5000 |
| IHC | 1:50-1:200 |
| IF | 1:20-1:200 |
NONO, also known as p54nrb, is a multifunctional nuclear protein that plays essential roles in RNA processing, transcription regulation, and DNA repair. As a component of the paraspeckle nuclear bodies, NONO participates in the retention of hyperedited RNAs in the nucleus and contributes to circadian clock regulation. Its involvement in diverse nuclear processes makes it a valuable target for researchers investigating epigenetics, nuclear signaling, and gene expression mechanisms.
This recombinant monoclonal antibody, generated from clone 8C11, offers the consistency and reproducibility that demanding experimental workflows require. Because the antibody sequence is defined and produced recombinantly in rabbit host cells, researchers benefit from lot-to-lot uniformity that traditional hybridoma-derived antibodies cannot guarantee. This reliability proves particularly valuable for longitudinal studies or when standardizing protocols across research groups.
Validation data demonstrates robust performance across multiple applications. In western blot experiments, the antibody detects NONO at the expected 55 kDa molecular weight across diverse human cell lines including 293, HeLa, HepG2, and Ntera-2, confirming consistent target recognition regardless of cellular context. Immunohistochemistry studies reveal clear nuclear staining in paraffin-embedded human breast cancer and brain tissue sections, supporting its utility in pathological investigations. For subcellular localization studies, immunofluorescence analysis in HeLa cells shows distinct nuclear signal that correlates well with DAPI counterstaining, enabling precise visualization of NONO distribution.
The unconjugated format and affinity-purified preparation provide flexibility for researchers to pair this antibody with their preferred detection systems. Whether investigating paraspeckle biology, exploring NONO's role in cancer progression, or studying nuclear RNA processing pathways, this antibody delivers the specificity and versatility needed for rigorous experimental investigation.
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