H-D-Asp(OMe)-OH HCl
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H-D-Asp(OMe)-OH HCl

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Category
D-Amino Acids
Catalog number
BAT-004824
CAS number
22728-89-8
Molecular Formula
C5H10ClNO4
Molecular Weight
183.59
H-D-Asp(OMe)-OH HCl
IUPAC Name
(2R)-2-amino-4-methoxy-4-oxobutanoic acid;hydrochloride
Synonyms
D-Aspartic acid-b-methyl ester hydrochloride; 4-Methyl hydrogen D-aspartate hydrochloride; (R)-2-Amino-4-methoxy-4-oxobutanoic acid hydrochloride
Purity
95%
Boiling Point
329°C at 760mmHg
Storage
Store at 2-8°C
InChI
InChI=1S/C5H9NO4.ClH/c1-10-4(7)2-3(6)5(8)9;/h3H,2,6H2,1H3,(H,8,9);1H/t3-;/m1./s1
InChI Key
QRBMPUYOGOCYDJ-AENDTGMFSA-N
Canonical SMILES
COC(=O)CC(C(=O)O)N.Cl

H-D-Asp(OMe)-OH HCl is a chemical compound used in various scientific research and pharmaceutical applications. Here are some key applications of H-D-Asp(OMe)-OH HCl:

Peptide Synthesis: H-D-Asp(OMe)-OH HCl is used as a building block in the synthesis of peptides and proteins. It allows for the incorporation of aspartic acid residues with protected carboxyl groups, facilitating the formation of peptide bonds. This is essential in creating peptides for research and therapeutic purposes.

Drug Development: In drug development, H-D-Asp(OMe)-OH HCl is utilized to design and synthesize novel compounds. By incorporating this modified aspartic acid derivative, researchers can create molecules with enhanced stability and bioavailability. This aids in the discovery and optimization of new pharmaceuticals.

Chemical Biology: H-D-Asp(OMe)-OH HCl is employed in chemical biology to study protein-protein interactions and enzyme activities. It can be used to create specific peptide probes that help elucidate biological pathways and mechanisms. This information is crucial for understanding cellular processes and identifying potential drug targets.

Enzyme Engineering: In enzyme engineering, H-D-Asp(OMe)-OH HCl serves as a substrate for modifying enzyme active sites. Researchers can use this compound to introduce aspartic acid-related modifications, thereby enhancing or altering enzyme activity. This approach is valuable for creating improved biocatalysts for industrial applications.

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