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Accelerated Cell Death in Podospora Autophagy Mutants

机译:Podospora自噬突变体中加速的细胞死亡。

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Although autophagy is characteristic of type II programmed cell death (PCD), its role in cell death is currently debated. Both cell death-promoting and prosurvival roles of autophagy have been reported depending on the organism and the cell type. In filamentous fungi, a cell death reaction known as an incompatibility reaction occurs when cells of unlike genotype fuse. Cell death by incompatibility is characterized by a dramatic vacuolar enlargement and cell lysis. In Podospora anserina, autophagy is induced early during this cell death reaction. Cell death by incompatibility in Podospora is a model of type II PCD used here to assess the role of autophagy in this type of cell death. We have inactivated PaATG1, the Podospora ortholog of the Saccharomyces cerevisiae ATG1 gene involved in the early steps of autophagy in yeast. The ΔPaATG1 mutant displays developmental defects characteristic of abrogated autophagy in Podospora. Using the green fluorescent protein-PaATG8 autophagosome marker, we show that autophagy is abolished in this mutant. Neither cell death by incompatibility nor vacuolization are suppressed in ΔPaATG1 and ΔPaATG8 autophagy mutants, indicating that a vacuolar cell death reaction without autophagy occurs in Podospora. Our results thus provide a novel example of a type II PCD reaction in which autophagy is not the cause of cell death. In addition, we found that cell death is accelerated in ΔPaATG null mutants, suggesting that autophagy has a protective role in this type II PCD reaction.
机译:尽管自噬是II型程序性细胞死亡(PCD)的特征,但目前它在细胞死亡中的作用尚有争议。自噬的促进细胞死亡和存活的作用都取决于生物体和细胞类型。在丝状真菌中,当不同基因型的细胞融合时会发生称为不相容反应的细胞死亡反应。不相容性导致的细胞死亡的特征在于明显的液泡增大和细胞溶解。在 Podospora anserina 中,自噬在细胞死亡反应的早期被诱导。在 Podospora 中由于不相容而导致的细胞死亡是II型PCD模型,此处用于评估自噬在此类细胞死亡中的作用。我们已经使Pa ATG1 (与酿酒酵母ATG1 基因的 Podospora 直向同源物失活),该基因与酵母自噬的早期阶段有关。 ΔPa ATG1 突变体显示了 Podospora 中自噬的发育缺陷。使用绿色荧光蛋白-PaATG8自噬标记,我们表明该突变体中的自噬被废除了。自噬突变体ΔPa ATG1 和ΔPa ATG8 自噬突变体均不能抑制因不相容而导致的细胞死亡,这表明 Podospora 中发生了不自噬的液泡细胞死亡反应。 >。因此,我们的结果提供了II型PCD反应的新例子,其中自噬不是细胞死亡的原因。此外,我们发现在ΔPa ATG null突变体中细胞死亡加速,这表明自噬在这种II型PCD反应中具有保护作用。

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