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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The antifungal plant defensin HsAFP1 induces autophagy, vacuolar dysfunction and cell cycle impairment in yeast
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The antifungal plant defensin HsAFP1 induces autophagy, vacuolar dysfunction and cell cycle impairment in yeast

机译:抗真菌植物防御素HSAFP1诱导酵母中的自噬,真空功能障碍和细胞周期损伤

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摘要

The plant defensin HsAFP1 is characterized by broad-spectrum antifungal activity and induces apoptosis in Candida albicans. In this study, we performed a transcriptome analysis on C. albicans cultures treated with HsAFP1 to gain further insight in the antifungal mode of action of HsAFP1. Various genes coding for cell surface proteins, like glycosylphosphatidylinositol (GPI)-anchored proteins, and proteins involved in cation homeostasis, autophagy and in cell cycle were differentially expressed upon HsAFP1 treatment. The biological validation of these findings was performed in the model yeast Saccharomyces cerevisiae. To discriminate between events linked to HsAFP1's antifungal activity and those that are not, we additionally used an inactive HsAFP1 mutant. We demonstrated that (i) HsAFP1-resistent S. cerevisiae mutants that are characterized by a defect in processing GPI-anchors are unable to internalize HsAFP1, and (ii) moderate doses (FC50, fungicidal concentration resulting in 50% killing) of HsAFP1 induce autophagy in S. cerevisiae, while high HsAFP1 doses result in vacuolar dysfunction. Vacuolar function is an important determinant of replicative lifespan (RLS) under dietary restriction (DR). In line, HsAFP1 specifically reduces RLS under DR. Lastly, (iii) HsAFP1 affects S. cerevisiae cell cycle in the G2/M phase. However, the latter HsAFP1-induced event is not linked to its antifungal activity, as the inactive HsAFP1 mutant also impairs the G2/M phase. In conclusion, we demonstrated that GPI-anchored proteins are involved in HsAFP1's internalization, and that HsAFP1 induces autophagy, vacuolar dysfunction and impairment of the cell cycle. Collectively, all these data provide novel insights in the mode of action of HsAFP1 as well as in S. cerevisiae tolerance mechanisms against this peptide.
机译:植物防御素HSAFP1的特征在于广谱抗真菌活性,并诱导念珠菌患者凋亡。在这项研究中,我们对HSAFP1处理的C. albicans培养物进行了转录组分析,以进一步了解Hsafp1的抗真菌作用模式的洞察。编码用于细胞表面蛋白的各种基因,如糖基磷脂肌醇(GPI)-Agnoralasis,以及涉及阳离子稳态,自噬和细胞周期的蛋白质在HSAFP1处理时差异表达。这些发现的生物学验证是在模型酵母酿酒酵母中进行的。为了区分与HSAFP1的抗真菌活动相关的事件以及那些没有的事件,我们还使用了无效的HSAFP1突变体。我们证明(i)Hsafp1抵抗型突变体突变体,其特征在于加工GPI锚的缺陷,不能将HSAFP1和(II)中等剂量(FC50,杀真菌浓度导致50%杀灭)的HSAFP1诱导酿酒酵母中的自噬,而HING HSAFP1剂量导致真空功能障碍。真空功能是饮食限制下重复寿命(RLS)的重要决定因素(DR)。在线,HSAFP1专门减少DR下的RL。最后,(iii)Hsafp1影响G2 / M相中的酿酒酵母细胞周期。然而,后一种HSAFP1诱导的事件与其抗真菌活性没有与其抗真菌活性相关联,因为无活性HSAFP1突变体也损害G2 / M相。总之,我们证明了GPI锚定蛋白参与了HSAFP1的内化,HSAFP1诱导自噬,真空功能障碍和细胞周期的损伤。集体,所有这些数据都在HSAFP1的作用模式以及对该肽的酿酒酵母耐受机制方面提供了新的洞察。

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