Affiliation:
1. Faculty of Chemistry and Food Chemistry Technical University Dresden Bergstr. 66 01069 Dresden Germany
2. Interfaculty Institute of Microbiology and Infection Medicine Tübingen (IMIT) University of Tübingen Auf der Morgenstelle 28 72076 Tübingen Germany
3. Cluster of Excellence Controlling Microbes to Fight Infections University of Tübingen Auf der Morgenstelle 28 72076 Tübingen Germany
Abstract
AbstractIn response to the pressing global challenge of antibiotic resistance, time efficient design and synthesis of novel antibiotics are of immense need. Polycyclic polyprenylated acylphloroglucinols (PPAP) were previously reported to effectively combat a range of gram‐positive bacteria. Although the exact mode of action is still not clear, we conceptualized a late‐stage divergent synthesis approach to expand our natural product‐based PPAP library by 30 additional entities to perform SAR studies against methicillin‐resistant Staphylococcus aureus (MRSA). Although at this point only data from cellular assays are available and understanding of molecular drug‐target interactions are lacking, the experimental data were used to generate 3D‐QSAR models via an artificial intelligence training and to identify a common pharmacophore model. The experimentally validated QSAR model enabled the estimation of anti‐MRSA activities of a virtual compound library consisting of more than 100,000 in‐silico generated B PPAPs, out of which the 20 most promising candidates were synthesized. These novel PPAPs revealed significantly improved cellular activities against MRSA with growth inhibition down to concentrations less than 1 μm.
Funder
Ministerium für Wissenschaft, Forschung und Kunst Baden-Württemberg
Sächsisches Staatsministerium für Wissenschaft und Kunst
Deutsche Forschungsgemeinschaft
Cited by
1 articles.
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