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1.
Carbohydr Res ; 507: 108373, 2021 Sep.
Article de Anglais | MEDLINE | ID: mdl-34157641

RÉSUMÉ

Burkholderia gladioli is a Gram-negative bacterium that biosynthesizes a cocktail of potent antimicrobial compounds, including the antifungal phenolic glycoside sinapigladioside. Herein, we report the total synthesis of the proposed structures of gladiosides I and II, two structurally related phenolic glycosides previously isolated from B. gladioli OR1 cultures. Importantly, the physical and analytical data of the synthetic compounds were in significant discrepancies with the natural products suggesting a misassignment of the originally proposed structures. Furthermore, we have uncovered an acid-catalyzed fragmentation mechanism converting the α,ß-unsaturated methyl carbamate-containing gladioside II into the aldehyde-containing gladioside I. Our results lay the foundation for the expeditious synthesis of derivatives of these Burkholderia-derived phenolic glycosides, which would enable to decipher their biological roles and potential pharmacological properties.


Sujet(s)
Burkholderia gladioli , Antibactériens , Antifongiques , Tests de sensibilité microbienne
2.
Org Biomol Chem ; 17(39): 8878-8901, 2019 10 21.
Article de Anglais | MEDLINE | ID: mdl-31513223

RÉSUMÉ

Melioidosis and glanders, respectively caused by the Gram-negative bacteria Burkholderia pseudomallei (Bp) and Burkholderia mallei (Bm), are considered as urgent public health issues in developing countries and potential bioterrorism agents. Bp and Bm lipopolysaccharides (LPS) have been identified as attractive vaccine candidates for the development of prophylactic measures against melioidosis and glanders. Bp and Bm express structurally similar LPSs wherein the O-antigen (OAg) portion consists of a heteropolymer whose repeating unit is a disaccharide composed of d-glucose and 6-deoxy-l-talose residues, the latter being diversely acetylated and methylated. Herein we report the synthesis of two tetrasaccharides mimicking the main substitution epitopes of Bp and Bm LPS OAgs. The assembly of the tetrasaccharides was achieved using a sequential glycosylation strategy while relying on the late-stage epimerization of the inner rhamnose into a 6-deoxy-l-talose residue. We show that these synthetic compounds strongly react with culture-confirmed Thai melioidosis patient serum and closely mimic the antigenicity of native Bp OAg. Our results suggest that these tetrasaccharides could be suitable candidates for the development of vaccines and/or diagnostic tools against melioidosis and glanders.


Sujet(s)
Burkholderia mallei/immunologie , Burkholderia pseudomallei/immunologie , Épitopes/composition chimique , Mélioïdose/sang , Mélioïdose/immunologie , Antigènes O/immunologie , Oligosaccharides/composition chimique , Oligosaccharides/immunologie , Burkholderia mallei/composition chimique , Burkholderia pseudomallei/composition chimique , Épitopes/sang , Épitopes/immunologie , Humains , Antigènes O/composition chimique , Oligosaccharides/sang , Thaïlande
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