ent-Beyerane Diterpenes as a Key Platform for the Development of ArnT-Mediated Colistin Resistance Inhibitors
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2020Metadata
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Quaglio, Deborah
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ent-Beyerane Diterpenes as a Key Platform for the Development of ArnT-Mediated Colistin Resistance Inhibitors
Author
- Quaglio, Deborah;
- Mangoni, María Luisa;
- Stefanelli, Roberta;
- Corradi, Silvia;
- Casciaro, Bruno;
- Vergine, Valeria;
- Lucantoni, Federica;
- Cavinato, Luca;
- Cammarone, Silvia;
- Loffredo, María Rosa;
- Cappiello, Floriana;
- Calcaterra, Andrea;
- Erazo Giuffra, Silvia;
- Ghirga, Francesca;
- Mori, Mattia;
- Imperi, Francesco;
- Ascenzioni, Fiorentina;
- Botta, Bruno;
Abstract
Colistin is a last-resort antibiotic for the treatment of multidrug resistant Gram-negative bacterial infections. Recently, a natural ent-beyerene diterpene was identified as a promising inhibitor of the enzyme responsible for colistin resistance mediated by lipid A aminoarabinosylation in Gram-negative bacteria, namely, ArnT (undecaprenyl phosphate-alpha-4-amino-4-deoxy-L-arabinose arabinosyl transferase). Here, semisynthetic analogues of hit were designed, synthetized, and tested against colistin-resistant Pseudomonas aeruginosa strains including clinical isolates to exploit the versatility of the diterpene scaffold. Microbiological assays coupled with molecular modeling indicated that for a more efficient colistin adjuvant activity, likely resulting from inhibition of the ArnT activity by the selected compounds and therefore from their interaction with the catalytic site of ArnT, an ent-beyerane scaffold is required along with an oxalate-like group at C-18/C-19 or a sugar residue at C-19 to resemble L-Ara4N. The ent-beyerane skeleton is identified for the first time as a privileged scaffold for further cost-effective development of valuable colistin resistance inhibitors.
Patrocinador
Istituto Pasteur Italia Fondazione Cenci Bolognetti
Ministry of Health, Italy
Italian Cystic Fibrosis Research Foundation
15/2019
Excellence Departments grant from MIUR
commi 314-337 Legge 232/2016
Departments of Chemistry and Technology of Drugs of the Sapienza University of Rome
Department of Biotechnology, Chemistry and Pharmacy of the University of Siena
PON (Piano Operativo Nazionale)
ARS01_00432
03/2018-09/2020
Ministry of Education, Universities and Research (MIUR)
Research Projects of National Relevance (PRIN)
Sapienza University
RM11816436113D8A
European Cooperation in Science and Technology (COST)
CM1407
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Artículo de publicación ISI Artículo de publicación SCOPUS
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J. Org. Chem. 2020, 85, 10891−10901
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