| Code | CSB-RA203929A0HU |
| Size | US$210 |
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| Application | Recommended Dilution |
|---|---|
| WB | 1:500-1:5000 |
| IHC | 1:50-1:200 |
| FC | 1:50-1:200 |
SCARB2, also known as lysosomal integral membrane protein 2 (LIMP-2), serves as a critical receptor mediating the transport of beta-glucocerebrosidase to lysosomes and functions as a cellular entry receptor for certain enteroviruses. This protein plays significant roles in lysosomal biogenesis and membrane organization, with mutations linked to action myoclonus-renal failure syndrome and implications for cardiovascular research. Understanding SCARB2 expression and localization provides valuable insights into lysosomal function and associated pathological conditions.
This recombinant monoclonal antibody, clone 12F9, offers the consistency and reproducibility that demanding research protocols require. Generated against a synthetic peptide derived from human SCARB2 and produced using recombinant technology in rabbit host, this antibody delivers sequence-defined specificity with minimal lot-to-lot variation, ensuring your experimental results remain comparable across studies.
Extensive validation confirms reliable performance across multiple platforms. Western blot analysis demonstrates robust detection in diverse human cell lines including HeLa, MCF7, HEK293, PC-3, A549, U251, and COLO205, with cross-species reactivity confirmed in mouse and rat brain tissue lysates. The observed band at 77 kDa, higher than the predicted 54 kDa molecular weight, reflects the extensive glycosylation characteristic of this lysosomal sialoglycoprotein. Immunohistochemistry validation in paraffin-embedded human liver tissue and colorectal cancer specimens demonstrates clear staining at 1:100 dilution, while flow cytometry analysis of A431 cells shows distinct positive population shifts compared to isotype controls.
Whether investigating lysosomal biology, viral entry mechanisms, or cardiovascular-related pathways, this antibody provides the flexibility to move seamlessly between western blotting, immunohistochemistry, and flow cytometry applications within your research workflow.
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