Rabbit Polyclonal ENO3 antibody. Suitable for IHC-P and reacts with Rat samples. Immunogen corresponding to Synthetic Peptide within Human ENO3 aa 400 to C-terminus conjugated to Keyhole Limpet Haemocyanin.
pH: 7.4
Preservative: 0.02% Proclin 300
Constituents: 50% Glycerol (glycerin, glycerine), 48.98% TBS, 1X, 1% BSA
IHC-P | |
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Rat | Tested |
Species | Dilution info | Notes |
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Species Rat | Dilution info 1/100.00000 - 1/500.00000 | Notes Use at 1/50 - 1/200 with fluorescent detection methods. Perform heat-mediated antigen retrieval with citrate buffer pH 6 before commencing with IHC staining protocol. |
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Glycolytic enzyme that catalyzes the conversion of 2-phosphoglycerate to phosphoenolpyruvate. Appears to have a function in striated muscle development and regeneration.
Beta-enolase, 2-phospho-D-glycerate hydro-lyase, Enolase 3, Muscle-specific enolase, Skeletal muscle enolase, MSE, ENO3
Rabbit Polyclonal ENO3 antibody. Suitable for IHC-P and reacts with Rat samples. Immunogen corresponding to Synthetic Peptide within Human ENO3 aa 400 to C-terminus conjugated to Keyhole Limpet Haemocyanin.
pH: 7.4
Preservative: 0.02% Proclin 300
Constituents: 50% Glycerol (glycerin, glycerine), 48.98% TBS, 1X, 1% BSA
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The ENO3 protein also known as beta-enolase mechanically functions as an enzyme involved in glycolysis catalyzing the conversion of 2-phosphoglycerate to phosphoenolpyruvate. This protein has a molecular mass of approximately 47 kDa. It is specifically expressed in skeletal muscle tissue where it plays a critical role in energy metabolism. Beta-enolase is an isoform of enolase that is distinct from the alpha (ENO1) and gamma (ENO2) isoforms which have different tissue specificities.
Beta-enolase supports cellular energy production in muscles. It does not typically form part of a protein complex but acts independently in the glycolytic pathway. Its function in glycolysis is important for providing ATP to muscle cells especially during periods of high energy demand such as exercise. The efficient conversion of metabolic substrates in this pathway is essential for muscle function and maintenance.
Beta-enolase operates within the glycolytic pathway and plays an important role in energy production. This pathway is fundamental for breaking down glucose to provide ATP the energy currency of the cell. Beta-enolase works closely with other key glycolytic enzymes such as hexokinase and phosphofructokinase. Its role is indispensable in maintaining the flow of carbon through glycolysis ensuring robust energy supply for muscle contraction.
Beta-enolase is associated with diseases like glycogen storage disease type XIII and muscle-related disorders. Mutations in ENO3 gene can lead to reduced energetic efficiency and impact muscular health. Of particular note is the connection with related glycolytic proteins which may exhibit compensatory or contributing roles in these disorders. This highlights the importance of beta-enolase and its interactions in maintaining muscle physiology and energy homeostasis.
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This species and application combination has not been tested, but we predict it will work based on strong homology. However, this combination is not covered by our product promise.
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Immunohistochemical analysis of formalin/PFA-fixed paraffin-embedded rat brain tissue sections labeling ENO3 with ab203203 at a 1/200 dilution, followed by conjugation to the secondary antibody and DAB staining.
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