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Published on: January 13, 2017
Dihydro-α-Pyrone Antibiotics from a Soil-Derived Fungus Talaromyces sp. G23
Zi-Peng Wang1,2, Si-Jie Cheng2, Ying Li2
1Key Laboratory of Chemical Biology (Ministry of Education), School of Pharmaceutical Sciences, Cheeloo College of Medicine, Shandong University, 44 West Wen-Hua Road, Jinan 250012, PR China.
Abstract:
Nine novel dihydro-α-pyrone derivatives, talaromypyrones A-I (1-9), were isolated from the soil-derived fungus Talaromyces sp. G23. These compounds share a conserved 3'R-configuration within the 4-hydroxy-5,6-dihydro-2-pyrone core but display notable variations in their flanking polyketide chains. Talaromypyrones A-H (1-8) demonstrate potent antibacterial activity against Gram-positive bacteria, including drug-resistant strains, while exhibiting excellent safety profile by showing no cytotoxicity toward normal human LO2 cells. However, they exhibit no activity against Gram-negative bacteria (likely due to their inability to penetrate the outer membrane) and fungi. Such antimicrobial profile, combined with the structural similarity to the α-pyrone antibiotic myxopyronin, suggests a potential target in the switch region of bacterial RNA polymerase (RNAP). Molecular docking studies revealed that talaromypyrone E (5) binds to the same site of RNAP as myxopyronin and forms additional hydrogen bonds between the 4-hydroxy-5,6-dihydro-2-pyrone core and the RNAP residues. Furthermore, talaromypyrones A (1) and D (4) demonstrate moderate anti-inflammatory activity, positioning 4-hydroxy-5,6-dihydro-2-pyrone core as a promising building block for the development of dual-function agents capable of concurrently addressing both conventional and drug-resistant bacterial infections while alleviating associated inflammatory responses.
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