| Code | CSB-RA732978MA1HU |
| Size | $49.9 |
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| Application | Recommended Dilution |
|---|---|
| IHC | 1:50-1:200 |
| FC | 1:50-1:200 |
AGBL2, also known as cytosolic carboxypeptidase 2 (CCP2), plays a critical role in the post-translational modification of tubulin through its deglutamylation activity. This enzyme removes glutamate residues from polyglutamate side chains on tubulin, directly influencing microtubule dynamics and stability. Understanding AGBL2 function has become increasingly relevant in research exploring neurodegeneration, ciliopathies, and cellular processes dependent on precise tubulin modification patterns.
This recombinant monoclonal antibody against AGBL2 offers the reproducibility that demanding research protocols require. Generated through recombinant technology and derived from a single clone (1F3C12), it provides sequence-defined consistency across lots, eliminating the variability that can compromise longitudinal studies or multi-site collaborations. The human IgG1 isotype format and affinity chromatography purification ensure reliable performance across experimental workflows.
Validation studies demonstrate versatility across multiple applications. Immunohistochemistry testing at 1:100 dilution has confirmed specific staining in both mouse testis tissue and human breast cancer sections using citrate buffer antigen retrieval on the Leica Bond system. Flow cytometry analysis of Jurkat cells shows clear positive signal separation from isotype control when used at 1:100 dilution with standard fixation and permeabilization protocols. This cross-species reactivity with human and mouse samples provides flexibility for researchers working across model systems.
Whether investigating tubulin modification in reproductive biology, exploring AGBL2 expression patterns in cancer contexts, or characterizing cytoskeletal regulation in immune cell populations, this antibody delivers the technical consistency needed for meaningful experimental outcomes. The validated performance in tissue sections and suspension cells makes it well-suited for researchers studying AGBL2 across diverse biological questions.
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