Bishoyi Ajit Kumar, van Neer Jacq, Bahri Salima, Lorenz Sophie, de Cock Hans, Baldus Marc
NMR Spectroscopy, Bijvoet Center for Biomolecular Research, Utrecht University, Padualaan 8, Utrecht, 3584 CH, The Netherlands.
Microbiology, Department of Biology, Utrecht University, Padualaan 8, Utrecht, 3584 CH, The Netherlands.
Angew Chem Int Ed Engl. 2025 Aug 25;64(35):e202509012. doi: 10.1002/anie.202509012. Epub 2025 Jul 16.
The limited availability of antifungal drug treatments and the rising issue of drug resistance highlight the urgent need for new antifungal drugs to combat drug-resistant Aspergillus fumigatus. The host-defence peptide cathelicidin-2 has demonstrated a significant inhibitory effect on azole-resistant Aspergillus fumigatus but its mechanism of action remains elusive. We applied a tailored set H and C detected solid state nuclear magnetic resonance experiments to elucidate the cell wall composition of Aspergillus fumigatus and to shed light on the mechanism of action of the peptide within the cell wall. Our results revealed that presence of the peptide affects galactosaminogalactan, an important component involved in the pathogenesis of invasive aspergillosis, as well as other specific polysaccharides and amino acids within the mobile cell wall domain. At longer exposure times, the peptide also influences the rigid cell wall domains by enhancing water penetration into the hydrophobic rigid cell wall domain. The findings reveal how the peptide can reach the plasma membrane and may aid the design of novel antifungal drugs with enhanced efficacy.
抗真菌药物治疗的可用性有限以及耐药性问题日益突出,凸显了对抗耐药烟曲霉的新型抗真菌药物的迫切需求。宿主防御肽cathelicidin-2已显示出对唑类耐药烟曲霉具有显著抑制作用,但其作用机制仍不清楚。我们应用了一套定制的H和C检测固态核磁共振实验,以阐明烟曲霉的细胞壁组成,并揭示该肽在细胞壁内的作用机制。我们的结果表明,该肽的存在会影响半乳糖胺半乳聚糖(一种参与侵袭性曲霉病发病机制的重要成分)以及可移动细胞壁区域内的其他特定多糖和氨基酸。在较长的暴露时间下,该肽还通过增强水渗透到疏水刚性细胞壁区域来影响刚性细胞壁区域。这些发现揭示了该肽如何到达质膜,并可能有助于设计具有更高疗效的新型抗真菌药物。