A Janus Aglycone-Based Divergent Strategy for the Synthesis of the PGL-I Epitopes Ready for Conjugation

Abstract An efficient synthesis of epitopes of PGL-I glycolipids of Mycobacterium leprae was achieved using the 4-methoxyphenyl (MP) group as dual-mode Janus aglycone. Cleavage of the MP aglycone in a disaccharide gave a hemiacetal precursor of the glycosyl donor that was used for the assembly of the trisaccharide PGL-I epitope through α-selective [2+1] rhamnosylation (96:4 α:β). Selective demethylation of the MP aglycone in di- and trisaccharides followed by alkylation of the resulting phenolic hydroxy group gave diverse spacer aglycones suitable for the synthesis of neoglycoconjugates.

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Publication Details

Journal
Organic Letters
Published
2026-09-25
DOI
https://doi.org/10.1021/acs.orglett.6c03850
Primary Topic
Carbohydrate Chemistry and Synthesis
Type
article
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article

A Janus Aglycone-Based Divergent Strategy for the Synthesis of the PGL-I Epitopes Ready for Conjugation

Alexander Ivanovich Zinin, Leonid Olegovich Kononov, Natalya G. Kolotyrkina, Bogdan L Novosad
Organic Letters
Carbohydrate Chemistry and Synthesis
article

A Janus Aglycone-Based Divergent Strategy for the Synthesis of the PGL-I Epitopes Ready for Conjugation

Alexander Ivanovich Zinin, Leonid Olegovich Kononov, Natalya G. Kolotyrkina, Bogdan L Novosad
article en

Abstract

Abstract An efficient synthesis of epitopes of PGL-I glycolipids of Mycobacterium leprae was achieved using the 4-methoxyphenyl (MP) group as dual-mode Janus aglycone. Cleavage of the MP aglycone in a disaccharide gave a hemiacetal precursor of the glycosyl donor that was used for the assembly of the trisaccharide PGL-I epitope through α-selective [2+1] rhamnosylation (96:4 α:β). Selective demethylation of the MP aglycone in di- and trisaccharides followed by alkylation of the resulting phenolic hydroxy group gave diverse spacer aglycones suitable for the synthesis of neoglycoconjugates.

Organic Letters
N.D. Zelinsky Institute of Organic Chemistry (RU)
Openalex Percentile: Top 22%
Carbohydrate Chemistry and Synthesis
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