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| Availability |
1-3 business days |
| Species Reactivity |
Human |
| Format |
Purified |
| Host |
Rabbit |
| Clonality |
Polyclonal (rabbit origin) |
| Isotype |
Rabbit Ig |
| Purity |
Antigen affinity purified |
| UniProt |
P78317 |
| Localization |
Cytoplasmic, nuclear |
| Applications |
Western Blot : 1:500-1:2000 Flow Cytometry : 1:25 (1x10e6 cells) Immunohistochemistry (FFPE) : 1:25 |
| Limitations |
This RNF4 antibody is available for research use only. |
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./plp/all_image/img-F54707-0.4ML-1.jpg
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RNF4 Antibody / E3 Ubiquitin-Protein Ligase RNF4 Antibody. Immunohistochemistry analysis of RNF4 in FFPE human heart tissue. IHC staining of FFPE human heart using RNF4 Antibody / E3 Ubiquitin-Protein Ligase RNF4 Antibody demonstrates HRP-DAB brown staining within cardiomyocytes, with signal primarily localized to intracellular compartments consistent with nuclear and perinuclear distribution of this E3 ubiquitin ligase. The staining pattern reflects cellular regions associated with ubiquitin-mediated protein regulation and SUMO-targeted ubiquitination activity, while surrounding tissue architecture remains clearly defined.
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./plp/all_image/img-F54707-0.4ML-2.jpg
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Flow cytometry testing of fixed and permeabilized human HepG2 cells with RNF4 Antibody / E3 Ubiquitin-Protein Ligase RNF4 Antibody; Blue=isotype control, Green= RNF4 antibody.
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./plp/all_image/img-F54707-0.4ML-3.jpg
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Western blot testing of human LNCaP cell lysate with RNF4 antibody. Expected molecular weight: 15-30 kDa (isoform 1).
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./plp/all_image/img-F54707-0.4ML-4.jpg
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RNF4 Antibody / E3 Ubiquitin-Protein Ligase RNF4 Antibody for FACS. Flow cytometry analysis of RNF4 in permeabilized human HepG2 cells. Flow cytometric analysis of fixed and permeabilized human HepG2 cells stained with RNF4 Antibody / E3 Ubiquitin-Protein Ligase RNF4 Antibody shows a clear rightward shift of the RNF4-positive population (green) relative to isotype control (blue). The signal reflects intracellular detection of this nuclear E3 ubiquitin ligase, consistent with its role in SUMO-targeted ubiquitination and regulation of protein turnover pathways.
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