首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >Spastic paraplegia proteins spastizin and spatacsin mediate autophagic lysosome reformation
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Spastic paraplegia proteins spastizin and spatacsin mediate autophagic lysosome reformation

机译:痉挛性截瘫蛋白 spastizin 和 spatacsin 介导自噬溶酶体重组

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摘要

Autophagy allows cells to adapt to changes in their environment by coordinating the degradation and recycling of cellular components and organelles to maintain homeostasis. Lysosomes are organelles critical for terminating autophagy via their fusion with mature autophagosomes to generate autolysosomes that degrade autophagic materials; therefore, maintenance of the lysosomal population is essential for autophagy-dependent cellular clearance. Here, we have demonstrated that the two most common autosomal recessive hereditary spastic paraplegia gene products, the SPG15 protein spastizin and the SPG11 protein spatacsin, are pivotal for autophagic lysosome reformation (ALR), a pathway that generates new lysosomes. Lysosomal targeting of spastizin required an intact FYVE domain, which binds phosphatidylinositol 3-phosphate. Loss of spastizin or spatacsin resulted in depletion of free lysosomes, which are competent to fuse with autophagosomes, and an accumulation of autolysosomes, reflecting a failure in ALR. Moreover, spastizin and spatacsin were essential components for the initiation of lysosomal tubulation. Together, these results link dysfunction of the autophagy/lysosomal biogenesis machinery to neurodegeneration.
机译:自噬通过协调细胞成分和细胞器的降解和回收来维持体内平衡,从而使细胞适应环境的变化。溶酶体是通过与成熟的自噬体融合产生降解自噬物质的自噬体来终止自噬的细胞器;因此,维持溶酶体群体对于自噬依赖性细胞清除至关重要。在这里,我们已经证明,两种最常见的常染色体隐性遗传性痉挛性截瘫基因产物,SPG15 蛋白 spastizin 和 SPG11 蛋白 spatacsin,对于自噬溶酶体改革 (ALR) 至关重要,ALR 是一种产生新溶酶体的途径。spastizin 的溶酶体靶向需要一个完整的 FYVE 结构域,该结构域结合磷脂酰肌醇 3-磷酸。spastizin 或 spatacsin 的丢失导致能够与自噬体融合的游离溶酶体的耗竭,以及自噬溶酶体的积累,反映出 ALR 失败。此外,spastizin 和 spatacsin 是启动溶酶体管的重要组成部分。总之,这些结果将自噬/溶酶体生物发生机制的功能障碍与神经退行性变联系起来。

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