m-IgGκ BP-HRP (mouse IgGκ binding protein-HRP) is the preferred detection reagent for ATP5F1 Antibody (C-12) for WB applications. This reagent is now offered in a bundle with ATP5F1 Antibody (C-12) (see ordering information below). For additional m-IgGκ BP conjugates see our complete list of Mouse IgG Binding Proteins.
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ATP5F1 Antibody (C-12) is a high quality monoclonal ATP5F1 antibody (also designated ATP5F1 antibody) suitable for the detection of the ATP5F1 protein of mouse, rat and human origin. ATP5F1 Antibody (C-12) is available as both the non-conjugated anti-ATP5F1 antibody form, as well as multiple conjugated forms of anti-ATP5F1 antibody, including agarose, HRP, PE, FITC and multiple Alexa Fluor® conjugates. Mitochondrial ATP synthase is composed of two multi-subunit complexes that utilize an inner membrane electrochemical gradient to catalyze the synthesis of ATP during oxidative phosphorylation. The two multi-subunit complexes are designated F1 and F0, the former of which comprises the soluble catalytic core and the latter of which comprises the membrane-spanning proton channel of ATP synthase. F1 consists of five distinct subunits, designated ATP5A, ATP5B, ATP5C1, ATP5D and ATP5E, while F0 consists of ten subunits, designated ATP5H, ATP5G1, ATP5I, ATP5G2, ATP5J2, ATP5J, ATP5G3, ATP5S, ATP5F1 and ATP5L. ATP5F1 (ATP synthase, H+ transporting, mitochondrial F0 complex, subunit B1), also known as PIG47, is a 256 amino acid protein that localizes to the mitochondrial membrane and exists as a subunit of the F0 complex. ATP5F1 is encoded by a gene located on human chromosome 1, which spans about 260 million base pairs and comprises nearly 8% of the human genome.
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What application is the blocking peptide sc-514419 P appropriate for?
Asked by: jenni
Thank you for your question. The blocking peptide is intended for use as a negative control, by pre-adsorbing the mouse monoclonal antibody against the antigen. For full protocol details, please contact our Technical Services Department or view our online protocol here: