Department of Organic Chemistry, Faculty of Science and Technology, University of Debrecen, H-4032 Debrecen, Hungary.
Institute of Molecular Biology, Biocenter, Medical University of Innsbruck, A-6020 Innsbruck, Austria.
Int J Mol Sci. 2021 Jan 25;22(3):1183. doi: 10.3390/ijms22031183.
The genome of Q176 contains a gene coding for the 88-amino-acid (aa)-long glycine- and cysteine-rich antifungal protein C (PAFC). After maturation, the secreted antifungal miniprotein (MP) comprises 64 aa and shares 80% aa identity with the bubble protein (BP) from , which has a published X-ray structure. Our team expressed isotope (N, C)-labeled, recombinant PAFC in high yields, which allowed us to determine the solution structure and molecular dynamics by nuclear magnetic resonance (NMR) experiments. The primary structure of PAFC is dominated by 14 glycines, and therefore, whether the four disulfide bonds can stabilize the fold is challenging. Indeed, unlike the few published solution structures of other antifungal MPs from filamentous ascomycetes, the NMR data indicate that PAFC has shorter secondary structure elements and lacks the typical β-barrel structure, though it has a positively charged cavity and a hydrophobic core around the disulfide bonds. Some parts within the two putative γ-core motifs exhibited enhanced dynamics according to a new disorder index presentation of N-NMR relaxation data. Furthermore, we also provided a more detailed insight into the antifungal spectrum of PAFC, with specific emphasis on fungal plant pathogens. Our results suggest that PAFC could be an effective candidate for the development of new antifungal strategies in agriculture.
Q176 的基因组包含一个编码 88 个氨基酸(aa)长的甘氨酸和半胱氨酸丰富的抗真菌蛋白 C(PAFC)的基因。成熟后,分泌的抗真菌小蛋白(MP)由 64 个氨基酸组成,与来自 的气泡蛋白(BP)具有 80%的氨基酸同一性,BP 的 X 射线结构已公布。我们的团队以高产量表达了同位素(N,C)标记的重组 PAFC,这使我们能够通过核磁共振(NMR)实验确定其溶液结构和分子动力学。PAFC 的一级结构主要由 14 个甘氨酸组成,因此,四个二硫键是否能够稳定其折叠结构具有一定挑战性。事实上,与少数已发表的丝状子囊菌来源的其他抗真菌 MPs 的溶液结构不同,NMR 数据表明,PAFC 的二级结构元件更短,缺乏典型的β-桶结构,尽管它具有带正电荷的空腔和围绕二硫键的疏水性核心。根据 N-NMR 弛豫数据的新无序指数表示,两个假定的γ-核心模体中的某些部分表现出增强的动力学。此外,我们还进一步深入研究了 PAFC 的抗真菌谱,特别强调了真菌植物病原体。我们的研究结果表明,PAFC 可能是农业中开发新型抗真菌策略的有效候选物。