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Autophagic kinases SmVPS34 and SmVPS15 are required for viability in the filamentous ascomycete Sordaria macrospora

机译:自噬激酶SmVPS34和SmVPS15是丝状子囊虫Sordaria macrospora中生存力所必需的

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Autophagy is a tightly controlled degradation process of all eukaryotes. It includes the sequestration of cytoplasmic contents and organelles within a double-membraned autophagosome. Autophagy involves core autophagy related (atg) genes as well as genes regulating vesicle trafficking. Previously, we analyzed the impact of proteins of the core autophagic machinery SmATG7, SmATG8 and SmATG4 on the sexual and vegetative development of the filamentous ascomycete Sordaria macrospora. While deletion of Smatg8 and Smatg4 abolished fruiting-body formation and impaired vegetative growth, Smatg7 is required for viability. In yeast, the phosphatidylinositol 3-kinase vacuolar protein sorting 34 (Vps34) and its myristoylated membrane targeting unit, the protein kinase Vps15 have been shown to be important regulators of autophagy and vacuolar protein sorting. However, their exact role in filamentous ascomycetes remains elusive. To determine the function of Smvps34 and Smvps15 we isolated genes with high sequence similarity to Saccharomyces cerevisiae VPS34 and VPS15. For both genes we were not able to generate a homokaryotic knockout mutant in S. macrospora, suggesting that Smvps34 and Smvps15 are required for viability. Furthermore, we analyzed the repertoire of vps genes encoded by S. macrospora and could identify putative homologs of nearly all of the 61 VPS genes of S. cerevisiae
机译:自噬是所有真核生物的严格控制的降解过程。它包括隔离双膜自噬体中的细胞质内容物和细胞器。自噬涉及核心自噬相关(atg)基因以及调节囊泡运输的基因。以前,我们分析了核心自噬机制SmATG7,SmATG8和SmATG4的蛋白质对丝状子囊大孢子大戟草的有性和营养发育的影响。 Smatg8和Smatg4的缺失消除了子实体的形成并损害了营养生长,而Smatg7是生存能力所必需的。在酵母中,磷脂酰肌醇3-激酶液泡蛋白分选34(Vps34)及其肉豆蔻酰化膜靶向单元,蛋白激酶Vps15已被证明是自噬和液泡蛋白分选的重要调节剂。但是,它们在丝状子囊菌中的确切作用仍然难以捉摸。为了确定Smvps34和Smvps15的功能,我们分离了与酿酒酵母VPS34和VPS15具有高度序列相似性的基因。对于这两个基因,我们无法在大孢链霉菌中产生同源核型敲除突变体,这表明Smvps34和Smvps15是生存力所必需的。此外,我们分析了大孢链霉菌编码的vps基因的组成,并可以鉴定出酿酒酵母的几乎所有61个VPS基因的推定同源物。

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