L-Phenylalanine methyl ester hydrochloride
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L-Phenylalanine methyl ester hydrochloride

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Protected (S) enantiomer of the amino acid Phenylalanine.

Category
L-Amino Acids
Catalog number
BAT-004024
CAS number
7524-50-7
Molecular Formula
C10H13NO2·HCl
Molecular Weight
215.70
L-Phenylalanine methyl ester hydrochloride
IUPAC Name
methyl (2S)-2-amino-3-phenylpropanoate;hydrochloride
Synonyms
L-Phe-OMe HCl; methyl(2S)-2-amino-3-phenylpropanoate hydrochloride; L-Phenylalanine, methyl ester, hydrochloride
Appearance
White powder
Purity
≥ 99% (TLC)
Melting Point
156-162 °C
Boiling Point
264.2 °C at 760 mmHg
Storage
Store at 2-8 °C
InChI
InChI=1S/C10H13NO2.ClH/c1-13-10(12)9(11)7-8-5-3-2-4-6-8;/h2-6,9H,7,11H2,1H3;1H/t9-;/m0./s1
InChI Key
SWVMLNPDTIFDDY-FVGYRXGTSA-N
Canonical SMILES
COC(=O)C(CC1=CC=CC=C1)N.Cl
1. Screening, purification, and identification of the enzyme producing N-(L-alpha-L-aspartyl)-L-phenylalanine methyl ester from l-isoasparagine and L-phenylalanine methyl ester
Ikuo Kira, Yasuhisa Asano, Kenzo Yokozeki J Biosci Bioeng. 2009 Sep;108(3):190-3. doi: 10.1016/j.jbiosc.2009.03.018.
Screening was carried out for microorganisms able to produce N-(l-alpha-l-aspartyl)-l-phenylalanine methyl ester [APM] from l-isoasparagine and l-phenylalanine methyl ester hydrochloride. Of the 422 strains examined, 44 strains belonging to the family Enterobacteriaceae were found to produce APM. The enzyme catalyzing APM production was purified and identified as dipeptidase E.
3. Fluorinated Tetraphosphonate Cavitands
Alessandro Pedrini, Federico Bertani, Enrico Dalcanale Molecules. 2018 Oct 17;23(10):2670. doi: 10.3390/molecules23102670.
Two synthetic protocols for the introduction of fluorine atoms into resorcinarene-based cavitands, at the lower and upper rim, respectively, are reported. Cavitand 1, bearing four fluorocarbon tails, and cavitand 2, which presents a fluorine atom on the para position of a diester phosphonate phenyl substituent, were synthesized and their complexation abilities toward the model guest sarcosine methyl ester hydrochloride were evaluated via NMR titration experiments. The effect of complexation on the 19F NMR resonance of the probe is evident only in the case of cavitand 2, where the inset of the cation-dipole and H-bonding interactions between the P=O bridges and the guest is reflected in a sizable downfield shift of the fluorine probe.
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