Nombre del producto:H-beta-HoVal-OH.HCl

IUPAC Name:(3S)-3-amino-4-methylpentanoic acid hydrochloride

CAS:402587-64-8
Fórmula molecular:C6H14ClNO2
Pureza:95%
Número de catálogo:CM183882
Peso molecular:167.63

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CM183882-5g in stock ȯȯǫ

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Detalles del producto

Núm. De CAS :402587-64-8
Fórmula molecular:C6H14ClNO2
Punto de fusión:-
Código de sonrisas:CC(C)[C@@H](N)CC(O)=O.[H]Cl
Densidad:
Número de catálogo:CM183882
Peso molecular:167.63
Punto de ebullición:
Nº Mdl:
Almacenamiento:Store at room temperature.

Category Infos

Amino Acids and Peptides
Amino acids are organic compounds containing a basic amino group and an acidic carboxyl group. Because amino acids contain both amino and carboxyl groups, they can be polymerized in an end-to-end manner, removing a molecule of water to form a covalent amide bond or peptide bond. Many amino acids are linked together end to end to form a polypeptide. Amino acids and peptides are important components in the fields of medicine and life sciences.
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Product Other Information

Product Overview (S)-3-amino-4-methylpentanoic acid hydrochloride, also known as SAMP or S-AMP, is a non-proteinogenic amino acid that was first synthesized in the 1950s. It is a chiral molecule, meaning it has two non-superimposable mirror images, and is structurally similar to the amino acid alanine.
Physical Properties It is not water-soluble, and its chirality can make it difficult to work with.
Chemical Properties It is relatively inexpensive and easy to synthesize, and is stable in solution. It is also non-toxic and has a low molecular weight, making it easier to transport and store.
Synthesis and Application It has been used to study the mechanisms of enzymes such as carboxypeptidase A, peptidylglycine alpha-amidating monooxygenase, and cystathionine beta-synthase. It has also been used in the development of pharmaceuticals, including drugs for the treatment of hypertension, diabetes, and cancer.
Future Directions Future research into (S)-3-amino-4-methylpentanoic acid hydrochloride could include exploring its potential as an antimicrobial agent, studying its effects on other enzymes, and investigating its potential therapeutic applications. Other possible research directions include examining its effects on the immune system, investigating its role in metabolic pathways, and exploring its potential use in gene therapy.