SensoLyte® 520 Neprilysin Activity Assay Kit
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- Antigène Voir toutes MME Kits
- MME (Membrane Metallo-Endopeptidase (MME))
- Méthode de détection
- Fluorometric
- Application
- Activation (Act), Fluorescence Resonance Energy Transfer Microscopy (FRET)
- Marque
- SensoLyte®
- Attributs du produit
- The SensoLyte® 520 Neprilysin Assay Kit employs a novel internally quenched 5-FAM/QXL™ FRET substrate for the detection of neprilysin activity. The enzyme cleaves the FRET substrate into two separate fragments resulting in the release of 5-FAM fluorescence, which can be monitored at excitation /emission= 490/520 nm. The long wavelength fluorescence of 5-FAM is less interfered by the autofluorescence of components in biological samples and test compounds. The assay can detect as low as 0.78 ng/mL of active neprilysin.
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- Commentaires
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FRET-based Assay Kit
- Restrictions
- For Research Use only
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- Conseil sur la manipulation
- Protect Components A abd B from light and moisture.
- Stock
- -80 °C
- Stockage commentaire
- Store all kit Components at -20 °C, except Component C, which should be stored at -80 °C.
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- Antigène
- MME (Membrane Metallo-Endopeptidase (MME))
- Autre désignation
- Neprilysin (MME Produits)
- Synonymes
- CALLA Kit, CD10 Kit, NEP Kit, SFE Kit, 6030454K05Rik Kit, C85356 Kit, Nep Kit, neprilysin Kit, membrane metalloendopeptidase Kit, membrane metallo endopeptidase Kit, membrane metallo-endopeptidase Kit, MME Kit, Mme Kit
- Classe de substances
- Chemical
- Sujet
- Neprilysin (NEP) is a transmembrane metallopeptidase normally expressed by a variety of tissues. It is also known as neutral endopeptidase, and enkephalinase. NEP cleaves peptides at the N-terminal side of hydrophobic amino acid residues and is responsible for the degradation and inactivation of a variety of physiological substrates. NEP is a major extracellular amyloid beta-peptide degrading enzyme in the brain and targeting NEP is considered a potential therapeutic strategy for the prevention and treatment of Alzheimer's disease. NEP has also been implicated in the pathogenesis of hypertension, diabetes, and cancer.
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