Description | This product is a monoclonal antibody derived from Mouse (Mus musculus), which can specifically recognize ATPase H+ Transporting Accessory Protein 2. The antibody is expressed with mammalian cell transient expression system, serum-free and purified by affinity chromatography. The purity and integrity are tested via SDS-PAGE and SEC-HPLC analysis. Given an antigen, additional QC measures are also desired such as affinity testing and binding validation. Specifically, the antibody is provided in multiple formats for in vivo and in vitro assays. The Invivo version features greater than 95% purity, ultra-low endotoxin levels (<1 EU/mg or 0.1 EU/mg), and is preservative, stabilizer, and carrier protein-free. |
Clonality | Monoclonal |
Host Species | Mouse |
Target Species | Human, Mouse |
Isotype | IgM |
Expression Species | HEK293F or CHO |
Conjugation | None |
Purity | >95%, determined by SDS-PAGE and/or SEC-HPLC |
Endotoxin | <1 EU/mg, determined by LAL method |
Purification | Protein A affinity purified |
Sterility | 0.2 μM filtered |
Formulation | PBS, pH 7.4 |
Preservation | No preservatives |
Stabilizer | No stabilizers |
Storage | Store at 4⁰C within a week. For longer storage, aliquot and store at -20⁰C. |
Application | WST-1 assay; Inhib |
Application Notes | The antibody is recommended for detection of ATP6AP2 by WST-1 assays, Inhib assays. |
ELISA | Enzyme-Linked Immunosorbent Assay Protocol |
WB | Western Blot Protocol |
FC | Flow Cytometry Protocol |
Target | ATP6AP2 |
Alternative Name | ATPase H+ Transporting Accessory Protein 2; Vacuolar ATP Synthase Membrane Sector-Associated Protein M8-9; ATPase, H+ Transporting, Lysosomal Interacting Protein 2; ATPase H(+)-Transporting Lysosomal-Interacting Protein 2; ATPase, H+ Transporting, Lysosomal Accessory Protein 2; Embryonic Liver Differentiation Factor 10; ER-Localized Type I Transmembrane Adaptor; Renin/Prorenin Receptor; V-ATPase M8.9 Subunit; Prorenin Receptor; Renin Receptor; ATP6M8-9; ATP6IP2; ELDF10; N14F |
Gene ID | 10159 |
UniProt | O75787 |
Research Area | Signal Pathway; Metabolism |