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Early Molecular Insights into Thanatin Analogues Binding to A. baumannii LptA
- Source :
- Molecules; Volume 28; Issue 11; Pages: 4335
- Publication Year :
- 2023
- Publisher :
- MDPI AG, 2023.
-
Abstract
- The cationic antimicrobial ß-hairpin, thanatin, was recently developed into drug-like analogues active against carbapenem-resistant Enterobacteriaceae (CRE). The analogues represent new antibiotics with a novel mode of action targeting LptA in the periplasm and disrupting LPS transport. The compounds lose antimicrobial efficacy when the sequence identity to E. coli LptA falls below 70%. We wanted to test the thanatin analogues against LptA of a phylogenetic distant organism and investigate the molecular determinants of inactivity. Acinetobacter baumannii (A. baumannii) is a critical Gram-negative pathogen that has gained increasing attention for its multi-drug resistance and hospital burden. A. baumannii LptA shares 28% sequence identity with E. coli LptA and displays an intrinsic resistance to thanatin and thanatin analogues (MIC values > 32 µg/mL) through a mechanism not yet described. We investigated the inactivity further and discovered that these CRE-optimized derivatives can bind to LptA of A. baumannii in vitro, despite the high MIC values. Herein, we present a high-resolution structure of A. baumannii LptAm in complex with a thanatin derivative 7 and binding affinities of selected thanatin derivatives. Together, these data offer structural insights into why thanatin derivatives are inactive against A. baumannii LptA, despite binding events in vitro.
- Subjects :
- 10120 Department of Chemistry
Gram-negative bacteria
antimicrobial resistance
A. baumannii
LPS transport
LptA
thanatin
thanatin analogues
NMR structure
binding constants
1602 Analytical Chemistry
1601 Chemistry (miscellaneous)
3002 Drug Discovery
Organic Chemistry
3003 Pharmaceutical Science
Pharmaceutical Science
Analytical Chemistry
Chemistry (miscellaneous)
1313 Molecular Medicine
540 Chemistry
Drug Discovery
Molecular Medicine
Physical and Theoretical Chemistry
1606 Physical and Theoretical Chemistry
1605 Organic Chemistry
Subjects
Details
- ISSN :
- 14203049
- Volume :
- 28
- Database :
- OpenAIRE
- Journal :
- Molecules
- Accession number :
- edsair.doi.dedup.....8e827d0595174e6b4e870553a7d4acc5
- Full Text :
- https://doi.org/10.3390/molecules28114335