CAS 41486-92-4
:Butanoic acid,2-amino-4-(methylsulfonyl)-, (R)- (9CI)
Description:
Butanoic acid, 2-amino-4-(methylsulfonyl)-, (R)- (9CI), with the CAS number 41486-92-4, is an organic compound characterized by its carboxylic acid functional group and an amino group, which contributes to its classification as an amino acid derivative. The presence of a methylsulfonyl group enhances its solubility in polar solvents and may influence its biological activity. This compound typically exhibits properties such as being a white to off-white solid at room temperature, with a moderate melting point. It is soluble in water and various organic solvents, making it versatile for different applications. The (R)- configuration indicates its specific stereochemistry, which can be crucial for its interaction with biological systems. Butanoic acid derivatives are often studied for their potential roles in pharmaceuticals, agrochemicals, and as intermediates in organic synthesis. Its unique structure may impart specific reactivity and interaction profiles, making it of interest in medicinal chemistry and biochemistry.
Formula:C5H11NO4S
Synonyms:- D-Methioninesulfone
- D-Methionine sulfone
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Found 3 products.
(R)-2-Amino-4-(methylsulfonyl)butanoic acid
CAS:Formula:C5H11NO4SPurity:97%Color and Shape:SolidMolecular weight:181.2101H-D-Met(O2)-OH
CAS:<p>H-D-Met(O2)-OH is an amino acid that is naturally occurring in the human body. It can be found in dietary sources such as milk, eggs, and meat. This amino acid is a building block for proteins and also has a number of metabolic pathways. H-D-Met(O2)-OH isomerizes to form D-Met(O2)-OH and L-Met(O2)-OH through enzymatic reactions. These isomers have different biological effects, with L-Met(O2)-OH being more potent than D-Met(O2)-OH. The enzyme that catalyzes this reaction is called synthetase. H-D-Met(O2)-OH can be used as a supplement to increase muscle mass or as a treatment for gluconeogenesis disorders such as diabetes mellitus type 2.</p>Formula:C5H11NO4SPurity:Min. 95%Molecular weight:181.21 g/mol


