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Acetoacetyl-CoA sodium hydrate (Synonyms: 3-Oxobutanoyl-coenzyme A sodium hydrate)

Catalog No. TN13103 Copy Product Info
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Acetoacetyl CoA sodium hydrate is a precursor of HMG-CoA in the mevalonate pathway. The enzyme acetoacetyl-CoA thiolase catalyzes the formation of acetoacetyl CoA sodium hydrate from two acetyl-CoA molecules. This compound is crucial for cholesterol biosynthesis and serves as an intermediate in both fatty acid catabolism and synthesis.

Acetoacetyl-CoA sodium hydrate

Copy Product Info
🥰Excellent
Catalog No. TN13103
Synonyms 3-Oxobutanoyl-coenzyme A sodium hydrate

Acetoacetyl CoA sodium hydrate is a precursor of HMG-CoA in the mevalonate pathway. The enzyme acetoacetyl-CoA thiolase catalyzes the formation of acetoacetyl CoA sodium hydrate from two acetyl-CoA molecules. This compound is crucial for cholesterol biosynthesis and serves as an intermediate in both fatty acid catabolism and synthesis.

Acetoacetyl-CoA sodium hydrate
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Product Introduction

Bioactivity
Description
Acetoacetyl CoA sodium hydrate is a precursor of HMG-CoA in the mevalonate pathway. The enzyme acetoacetyl-CoA thiolase catalyzes the formation of acetoacetyl CoA sodium hydrate from two acetyl-CoA molecules. This compound is crucial for cholesterol biosynthesis and serves as an intermediate in both fatty acid catabolism and synthesis.
In vitro
The purified recombinant enzymes Msed_0389 and Msed_1423 catalyze the NAD-dependent oxidation of (S)-3-hydroxybutyryl-CoA to acetoacetyl-CoA with high substrate specificity, having K m values of 2.6 μM and 5 μM, respectively. These homologous bifunctional proteins are the only enzymes capable of converting crotonyl-CoA to acetoacetyl-CoA in the autotrophic Desulfurococcales (Ignicoccus hospitalis) and Thermoproteales (Pyrobaculum neutrophilus), which utilize the dicarboxylate/4-hydroxybutyrate cycle for CO2 fixation.
Synonyms3-Oxobutanoyl-coenzyme A sodium hydrate
Chemical Properties
Storage & Solubility Information
StoragePowder: -20°C for 3 years | In solvent: -80°C for 1 year Shipping with blue ice/Shipping at ambient temperature.

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Please enter your animal experiment information in the following box and click Calculate to obtain the stock solution preparation method and in vivo formula preparation method:
TargetMol | Animal experiments For example, if the intended dosage is 10 mg/kg for animals weighing 20 g , with a dosing volume of 100 μL per animal, TargetMol | Animal experiments and a total of 10 animals are to be administered, using a formulation of TargetMol | reagent 10% DMSO+ 40% PEG300+ 5% Tween 80+ 45% Saline/PBS/ddH2O , the resulting working solution concentration would be 2 mg/mL.
Stock Solution Preparation:

Dissolve 2 mg of the compound in 100 μL DMSOTargetMol | reagent to obtain a stock solution at a concentration of 20 mg/mL . If the required concentration exceeds the compound's known solubility, please contact us for technical support before proceeding.

Preparation of the In Vivo Formulation:

1) Add 100 μL of the DMSOTargetMol | reagent stock solution to 400 μL PEG300TargetMol | reagent and mix thoroughly until the solution becomes clear.

2) Add 50 μL Tween 80 and mix well until fully clarified.

3) Add 450 μL Saline,PBS or ddH2OTargetMol | reagent and mix thoroughly until a homogeneous solution is obtained.

This example is provided solely to demonstrate the use of the In Vivo Formulation Calculator and does not constitute a recommended formulation for any specific compound. Please select an appropriate dissolution and formulation strategy based on your experimental model and route of administration.
All co-solvents required for this protocol, includingDMSO, PEG300/PEG400, Tween 80, SBE-β-CD, and Corn oil, are available for purchase on the TargetMol website.
1 Enter information below:
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2 Enter the in vivo formulation:
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