Department of Organic Chemistry, Faculty of Science and Technology, University of Debrecen, Egyetem tér 1, H-4032 Debrecen, Hungary.
Division of Molecular Biology, Biocenter, Medical University of Innsbruck, Innrain 80-82, A-6020 Innsbruck, Austria.
Int J Biol Macromol. 2019 May 15;129:511-522. doi: 10.1016/j.ijbiomac.2019.02.016. Epub 2019 Feb 7.
Small, cysteine-rich and cationic antifungal proteins from natural sources are promising candidates for the development of novel treatment strategies to prevent and combat infections caused by drug-resistant fungi. However, limited information about their structure and antifungal mechanism hampers their future applications. In the present study, we determined the solution structure, dynamics and associated solvent areas of the Neosartorya (Aspergillus) fischeri antifungal protein NFAP. Genome mining within the genus revealed the presence of orthologous genes in N. fischeri and Neosartorya spathulata, and genes encoding closely related proteins can be found in Penicillium brasiliensis and Penicillium oxalicum. We show that the tertiary structure of these putative proteins can be resolved using the structure of NFAP as reliable template for in silico prediction. Localization studies with fluorescence-labelled protein pointed at an energy-dependent uptake mechanism of NFAP in the sensitive model fungus Neurospora crassa and subsequent cytoplasmic localization coincided with cell-death induction. The presented results contribute to a better understanding of the structure/function relationship of NFAP and related proteins and pave the way towards future antifungal drug development.
来自天然来源的小、富含半胱氨酸和阳离子的抗真菌蛋白是开发新型治疗策略以预防和对抗耐药真菌引起的感染的有希望的候选物。然而,关于它们的结构和抗真菌机制的有限信息阻碍了它们的未来应用。在本研究中,我们确定了 Neosartorya(曲霉属)fischeri 抗真菌蛋白 NFAP 的溶液结构、动力学和相关溶剂区域。属内的基因组挖掘显示了 N. fischeri 和 Neosartorya spathulata 中存在同源基因,并且可以在 Penicillium brasiliensis 和 Penicillium oxalicum 中发现编码密切相关蛋白的基因。我们表明,可以使用 NFAP 的结构作为可靠的模板,通过计算机预测来解析这些假定蛋白的三级结构。用荧光标记蛋白进行的定位研究表明,NFAP 在敏感模型真菌 Neurospora crassa 中具有能量依赖性摄取机制,随后细胞质定位与细胞死亡诱导一致。所呈现的结果有助于更好地理解 NFAP 和相关蛋白的结构/功能关系,并为未来的抗真菌药物开发铺平了道路。