Structure-activity relationships of bensulfuron methyl and its derivatives as novel agents against drug-resistant Candida auris.
Xue-Wen SunYixuan LiuXiaofang WangHao-Ran LiXin LinJin-Yin TangQing XuKylie A Agnew-FrancisJames A FraserZhi-Juan SunLuke W GuddatJian-Guo WangPublished in: Chemical biology & drug design (2023)
With the emergence of the human pathogen Candida auris as a threat to human health, there is a strong demand to identify effective medicines to prevent the harm caused by such drug-tolerant human fungi. Herein, a series of 33 new derivatives of bensulfuron methyl (BSM) were synthesized and characterized by 1 H NMR, 13 C NMR, and HRMS. Among the target compounds, 8a possessed the best K i value of 1.015 μM against C. auris acetohydroxyacid synthase (CauAHAS) and an MIC value of 6.25 μM against CBS10913, a clinically isolated strain of C. auris. Taken together the structures of BSM and the synthesized compounds, it was found that methoxy groups at both meta-position of pyrimidine ring are likely to provide desirable antifungal activities. Quantum calculations and molecular dockings were performed to understand the structure-activity relationships. The present study has hence provided some interesting clues for the discovery of novel antibiotics with this distinct mode of action.
Keyphrases
- drug resistant
- candida albicans
- human health
- endothelial cells
- high resolution
- multidrug resistant
- risk assessment
- magnetic resonance
- molecular dynamics
- acinetobacter baumannii
- induced pluripotent stem cells
- climate change
- biofilm formation
- small molecule
- solid state
- escherichia coli
- density functional theory
- quantum dots
- single molecule