CAS 60538-16-1
:D-Threonine, N-benzoyl-, methyl ester
Description:
D-Threonine, N-benzoyl-, methyl ester, identified by CAS number 60538-16-1, is an organic compound that belongs to the class of amino acid derivatives. It features a threonine backbone, which is an essential amino acid, modified by the addition of a benzoyl group and a methyl ester functional group. This compound typically appears as a white to off-white solid and is soluble in organic solvents, reflecting its ester functionality. The presence of the benzoyl group enhances its lipophilicity, which can influence its reactivity and interaction with biological systems. D-Threonine itself plays a crucial role in protein synthesis and is involved in various metabolic processes. The methyl ester form can be utilized in synthetic organic chemistry and may serve as an intermediate in the synthesis of more complex molecules. As with many chemical substances, safety data should be consulted to understand its handling, storage, and potential hazards. Overall, D-Threonine, N-benzoyl-, methyl ester is a valuable compound in both research and industrial applications.
Formula:C12H15NO4
InChI:InChI=1S/C12H15NO4/c1-8(14)10(12(16)17-2)13-11(15)9-6-4-3-5-7-9/h3-8,10,14H,1-2H3,(H,13,15)/t8-,10+/m0/s1
InChI key:InChIKey=KHOWDUMYRBCHAC-WCBMZHEXSA-N
SMILES:[C@H](NC(=O)C1=CC=CC=C1)(C(OC)=O)[C@H](C)O
Synonyms:- <span class="text-smallcaps">D</span>-Threonine, N-benzoyl-, methyl ester
- Bz-D-Thr-OMe
- N-Benzoyl-<span class="text-smallcaps">D</span>-threonine methyl ester
- Z-D-Thr-OMe
- N-Benzoyl-D-threonine methyl ester
- D-Threonine, N-benzoyl-, methyl ester
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Found 1 products.
Bz-D-Thr-OMe
CAS:<p>Bz-D-Thr-OMe is a synthetic peptide with an amino acid sequence of Bz-D-Thr-OH. It has the chemical formula C14H24N2O4S and a molecular weight of 288.4 g/mol. This peptide reacts selectively with the n-terminal amino and carboxylic acids in peptides, cleaving the peptide bonds between these residues to produce free amino acids.</p>Formula:C12H15NO4Purity:Min. 95%Molecular weight:237.25 g/mol
