| Code | CSB-RA189183A0HU |
| Size | US$210 |
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| Application | Recommended Dilution |
|---|---|
| WB | 1:500-1:2000 |
| FC | 1:50-1:200 |
NAT10, or N-acetyltransferase 10, is a multifunctional enzyme that plays critical roles in ribosome biogenesis, telomerase regulation, and RNA acetylation. As the only known enzyme capable of catalyzing ac4C modification on both RNA and DNA, NAT10 has emerged as a significant focus in cancer biology, cellular senescence research, and epitranscriptomics. Its involvement in cell proliferation and potential as a therapeutic target makes reliable detection tools essential for advancing these research areas.
This recombinant monoclonal antibody, clone 9C11, offers the consistency and reproducibility that demanding experiments require. Generated against a synthetic peptide derived from human NAT10 and produced using recombinant technology, this antibody provides sequence-defined specificity with minimal lot-to-lot variation. The rabbit IgG format, purified by affinity chromatography, ensures high purity for sensitive downstream applications.
Validation studies demonstrate robust performance across multiple experimental platforms. In western blot applications, this antibody successfully detects NAT10 across an extensive panel of human cell lines including SH-SY5Y, A549, HeLa, HEK293, PC-3, COLO205, Jurkat, and HepG2, as well as mouse NIH/3T3 cells, confirming cross-species reactivity. The observed band at approximately 130 kDa, slightly higher than the predicted 116 kDa molecular weight, likely reflects post-translational modifications such as glycosylation or phosphorylation characteristic of this nuclear protein. Flow cytometry validation in Jurkat cells demonstrates clear positive signal separation from isotype controls, supporting intracellular detection workflows.
Whether investigating RNA modification pathways, exploring NAT10's role in tumorigenesis, or studying ribosome assembly mechanisms, this antibody provides the reliability researchers need for reproducible results across western blot, flow cytometry, and ELISA applications.
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