Hexokinase, microorganism
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Hexokinase, microorganism is a hexokinase derived from microorganisms. It catalyzes the phosphorylation of glucose at the C6 position using ATP and Mg2+, exhibits broad substrate specificity, and demonstrates thermal stability under neutral to weakly alkaline pH and high-temperature conditions. Hexokinase, microorganism uses ATP as the primary phosphate donor for sugar phosphorylation reactions. Hexokinase, microorganism belongs to the prokaryotic hexokinase family and catalyzes sugar phosphorylation reactions in carbohydrate metabolism.
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- CAS No.: 9001-51-8
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Stockage:
Please store the product under the recommended conditions in the Certificate of Analysis.
Activité biologique
Description
In Vitro
Hexokinase, microorganism (0.05-1 mg extract protein; 2 minute initial reaction period) The optimized coupled spectrophotometric assay reliably measures hexokinase activity in Escherichia coli strain B crude extracts, with constant linear rate achieved after an initial short lag phase[3].
Hexokinase, microorganism family enzymes, represented by 13 distinct prokaryotic microbial species and a range of varied sugar substrate specificities, form a well-supported sequence cluster unified by shared conserved core sequence patterns and a common structural fold distinct from the ribokinase and galactokinase sugar kinase families[4].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only. Further protocols information, click here.
EC Number
2.7.1.1
Specific Activity
≥500 U/mg protein
Chemical Information
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CAS No. 9001-51-8
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Appearance Solid
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Color White to off-white
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SMILES
[Hexokinase, microorganism]
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Livraison
Room temperature in continental US; may vary elsewhere.
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Stockage
Please store the product under the recommended conditions in the Certificate of Analysis.
Protocole
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Kinase activity and phosphorylation assays
Kinase activity assays measure the ability of kinases to transfer phosphate groups from ATP to specific substrates, while phosphorylation assays detect the presence and levels of phosphorylated proteins. Common methods include radiolabeled ATP incorporation (e. g. ,), ADP release detection via bioluminescence (e. g. ,[3]), enzyme-linked immunosorbent assays (ELISA) for phospho-specific epitopes (e. g. ,[6]), and microtiter-based formats for high-throughput screening (e. g. ,[8]). The ADP-Glo assay quantifies kinase activity by measuring ADP produced during phosphorylation using a luciferase-based system. Radiometric assays involve autoradiography or scintillation counting after incorporation of 32P-labeled ATP into substrate proteins. ELISA-based approaches rely on phospho-specific antibodies to detect activated kinases in cell lysates or purified samples.
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Western Blot
Western blotting (WB) is a commonly used experimental method in molecular biology, biochemistry, and immunogenetics for identifying and quantifying target proteins. It combines gel electrophoresis with immunoassay, enabling researchers to analyze protein expression, post-translational modifications, and molecular weight.
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Protocol for Kinase activity and phosphorylation assays
Kinase activity assays measure transfer of phosphate from ATP to a protein or peptide substrate, generating phosphorylated substrate, ADP, or incorporated radiolabeled phosphate as the readout; phosphorylation assays measure site-specific phosphorylation in cells or tissues as a proxy for kinase-pathway activation, inhibition, or substrate regulation. Phosphorylation can be detected by phospho-specific Western blot, immunoprecipitation kinase assay, phospho-immunofluorescence, phospho-flow cytometry, luminescent ADP detection, radiolabeled ATP incorporation, or reporter-based pathway assays, and these readouts can be applied to cancer cells, primary neurons, mouse tumors, organoids, inflammatory macrophages, ferroptosis studies, and mitophagy studies when the kinase target is biologically relevant.
Pureté et documentation
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Fiche technique (267 KB)
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SDS (251 KB)
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- Portuguese - PT (251 KB)
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Instruction de manipulation (2659 KB)
Références
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)