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Genetic analysis of the Drosophila ESCRT-III complex protein, VPS24, reveals a novel function in lysosome homeostasis

机译:果蝇Escrt-III复合蛋白,VPS24的遗传分析揭示了溶酶体稳态的新功能

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The ESCRT pathway is evolutionarily conserved across eukaryotes and plays key roles in a variety of membrane remodeling processes. A new Drosophila mutant recovered in our forward genetic screens for synaptic transmission mutants mapped to the vps24 gene encoding a subunit of the ESCRT-III complex. Molecular characterization indicated a loss of VPS24 function, however the mutant is viable and thus loss of VPS24 may be studied in a developed multicellular organism. The mutant exhibits deficits in locomotion and lifespan and, notably, these phenotypes are rescued by neuronal expression of wild-type VPS24. At the cellular level, neuronal and muscle cells exhibit marked expansion of a ubiquitin-positive lysosomal compartment, as well as accumulation of autophagic intermediates, and these phenotypes are rescued cell-autonomously. Moreover, VPS24 expression in glia suppressed the mutant phenotype in muscle, indicating a cell-nonautonomous function for VPS24 in protective intercellular signaling. Ultrastructural analysis of neurons and muscle indicated marked accumulation of the lysosomal compartment in the vps24 mutant. In the neuronal cell body, this included characteristic lysosomal structures associated with an expansive membrane compartment with a striking tubular network morphology. These findings further define the in vivo roles of VPS24 and the ESCRT pathway in lysosome homeostasis and their potential contributions to neurodegenerative diseases characterized by defective ESCRT or lysosome function.
机译:Escrt途径在真核生物上进化地保守,并在各种膜重塑过程中发挥关键作用。在我们的前向遗传筛选中恢复的新果蝇突变体,用于映射到编码ESCRT-III络合物的亚基的VPS24基因的突触传播突变体。分子表征表明VPS24功能的损失,然而突变体是可行的,因此可以在发育的多细胞生物体中研究VPS24的丧失。突变体在运动和寿命中表现出缺陷,并且特别是,这些表型通过野生型VPS24的神经元表达来拯救。在细胞水平下,神经元和肌肉细胞表现出遍布蛋白阳性溶酶体隔室的显着膨胀,以及自噬中间体的积累,这些表型是自主拯救的细胞。此外,胶导中的VPS24表达抑制了肌肉中的突变表型,表明保护性细胞间信号传导中VPS24的细胞 - 非编程功能。神经元和肌肉的超微结构分析表明VPS24突变体中溶酶体隔室的显着积累。在神经元细胞体中,包括与具有引人注目的管状网络形态的膨胀膜隔室相关的特征溶酶体结构。这些发现进一步定义了VPS24的体内作用和溶酶体稳态中的Escrt途径及其对特征的神经变性疾病的潜在贡献,其特征在于缺陷的Escrt或溶酶体功能。

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