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Facile synthesis of new N-(aminocycloalkylene)amino acid compounds using chiral triflate esters with N-Boc-aminopyrrolidines and N-Boc-aminopiperidines.


ABSTRACT: In this study, we prepared a series of new N-(aminocycloalkylene)amino acid derivatives for use in chiral building blocks. The method was based on the conversion of enantiopure α-hydroxy acid esters into the corresponding chiral triflate esters, which were displaced by a nucleophilic substitution SN2 reaction with aminopyrrolidine and aminopiperidine derivatives, and the inversion of the configuration to give methyl 2-[(Boc-amino)cycloamin-1-yl]alkanoates with good yield and high enantiomeric and diastereomeric purity. Synthesized 2-[(Boc-amino)piperidin-1-yl]propanoates combined with ethyl l-phenylalaninate gave new chiral N-Boc- and N-nosyl-dipeptides containing a piperidine moiety. The structures were elucidated by 1H-, 13C-, and 15N-NMR spectroscopy, high-resolution mass spectrometry, and X-ray crystallography analyses.

SUBMITTER: Matuleviciute G 

PROVIDER: S-EPMC10353522 | biostudies-literature | 2023 Jul

REPOSITORIES: biostudies-literature

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Facile synthesis of new <i>N</i>-(aminocycloalkylene)amino acid compounds using chiral triflate esters with <i>N</i>-Boc-aminopyrrolidines and <i>N</i>-Boc-aminopiperidines.

Matulevičiūtė Gita G   Kleizienė Neringa N   Račkauskienė Greta G   Martynaitis Vytas V   Bieliauskas Aurimas A   Šachlevičiūtė Urtė U   Jankauskas Rokas R   Bartkus Martynas R MR   Sløk Frank A FA   Šačkus Algirdas A  

RSC advances 20230718 31


In this study, we prepared a series of new <i>N</i>-(aminocycloalkylene)amino acid derivatives for use in chiral building blocks. The method was based on the conversion of enantiopure α-hydroxy acid esters into the corresponding chiral triflate esters, which were displaced by a nucleophilic substitution S<sub>N</sub>2 reaction with aminopyrrolidine and aminopiperidine derivatives, and the inversion of the configuration to give methyl 2-[(Boc-amino)cycloamin-1-yl]alkanoates with good yield and hi  ...[more]

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