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A Genome-Wide Immunodetection Screen in S. cerevisiae Uncovers Novel Genes Involved in Lysosomal Vacuole Function and Morphology

机译:酿酒酵母中的全基因组免疫检测屏幕揭示了涉及溶酶体液泡功能和形态的新基因

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摘要

Vacuoles of yeast Saccharomyces cerevisiae are functionally analogous to mammalian lysosomes. Both are cellular organelles responsible for macromolecular degradation, ion/pH homeostasis, and stress survival. We hypothesized that undefined gene functions remain at post-endosomal stage of vacuolar events and performed a genome-wide screen directed at such functions at the late endosome and vacuole interface – ENV genes. The immunodetection screen was designed to identify mutants that internally accumulate precursor form of the vacuolar hydrolase carboxypeptidase Y (CPY). Here, we report the uncovering and initial characterizations of twelve ENV genes. The small size of the collection and the lack of genes previously identified with vacuolar events are suggestive of the intended exclusive functional interface of the screen. Most notably, the collection includes four novel genes ENV7, ENV9, ENV10, and ENV11, and three genes previously linked to mitochondrial processes – MAM3, PCP1, PPE1. In all env mutants, vesicular trafficking stages were undisturbed in live cells as assessed by invertase and active α-factor secretion, as well as by localization of the endocytic fluorescent marker FM4-64 to the vacuole. Several mutants exhibit defects in stress survival functions associated with vacuoles. Confocal fluorescence microscopy revealed the collection to be significantly enriched in vacuolar morphologies suggestive of fusion and fission defects. These include the unique phenotype of lumenal vesicles within vacuoles in the novel env9Δ mutant and severely fragmented vacuoles upon deletion of GET4, a gene recently implicated in tail anchored membrane protein insertion. Thus, our results establish new gene functions in vacuolar function and morphology, and suggest a link between vacuolar and mitochondrial events.
机译:酵母酿酒酵母的液泡在功能上类似于哺乳动物的溶酶体。两者都是负责大分子降解,离子/ pH稳态和应力存活的细胞器。我们假设未定义的基因功能保留在液泡事件的内体后阶段,并在晚期内体和液泡界面– ENV基因上进行了针对此类功能的全基因组筛选。免疫检测筛选旨在识别内部积聚液泡水解酶羧肽酶Y(CPY)前体形式的突变体。在这里,我们报告了十二个ENV基因的发现和初步表征。收集物的小规模和先前利用液泡事件鉴定的基因的缺乏提示了筛选的预期排他性功能界面。最值得注意的是,该集合包含四个新基因ENV7,ENV9,ENV10和ENV11,以及三个先前与线粒体过程相关的基因-MAM3,PCP1,PPE1。在所有env突变体中,通过转化酶和活性α因子的分泌,以及通过将内吞荧光标记FM4-64定位于液泡,可以评估活细胞中的水泡运输阶段不受干扰。几个突变体表现出与空泡相关的应激存活功能的缺陷。共聚焦荧光显微镜检查显示该集合明显富含液泡形态,提示融合和裂变缺陷。这些包括新型env9Δ突变体液泡内腔小泡的独特表型,以及缺失GET4(最近与尾锚膜蛋白插入有关的基因)后液泡严重断裂。因此,我们的结果建立了液泡功能和形态的新基因功能,并提示液泡和线粒体事件之间存在联系。

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