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TFEB/Mitf links impaired nuclear import to autophagolysosomal dysfunction in C9-ALS

机译:TFEB / MITF Links核导入核导入减少到C9-ALS中的自噬溶解剂功能障碍

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摘要

Disrupted nucleocytoplasmic transport (NCT) has been implicated in neurodegenerative disease pathogenesis; however, the mechanisms by which disrupted NCT causes neurodegeneration remain unclear. In a Drosophila screen, we identified ref(2)P/p62, a key regulator of autophagy, as a potent suppressor of neurodegeneration caused by the GGGGCC hexanucleotide repeat expansion (G4C2 HRE) in C9orf72 that causes amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD). We found that p62 is increased and forms ubiquitinated aggregates due to decreased autophagic cargo degradation. Immunofluorescence and electron microscopy of Drosophila tissues demonstrate an accumulation of lysosome-like organelles that precedes neurodegeneration. These phenotypes are partially caused by cytoplasmic mislocalization of Mitf/TFEB, a key transcriptional regulator of autophagolysosomal function. Additionally, TFEB is mislocalized and downregulated in human cells expressing GGGGCC repeats and in C9-ALS patient motor cortex. Our data suggest that the C9orf72-HRE impairs Mitf/TFEB nuclear import, thereby disrupting autophagy and exacerbating proteostasis defects in C9-ALS/FTD.
机译:破坏的核细胞质转运(NCT)涉及神经变性疾病的发病机制;然而,破坏NCT导致神经变性的机制仍不清楚。在果蝇筛选中,我们鉴定了ref(2)p / p62,这是一种自噬的一个关键调节器,作为由C9ORF72中的GGGGCC己核酸重复膨胀(G4C2 HRE)引起的神经变性的有效抑制剂,导致肌营养的侧向硬化(ALS)和额定仪器痴呆症(FTD)。我们发现P62增加,并且由于自噬发生物降低,由于自噬劣化降低而形成普带的聚集体。果蝇组织的免疫荧光和电子显微镜表现出溶酶体样细胞器的积累,所述溶酶体样细胞器在神经变性之前。这些表型由MITF / TFEB的细胞质错误级化部分是部分引起的,其自噬囊组织功能的关键转录调节剂。另外,TFEB在表达GGGGCC重复的人体细胞和C9-ALS患者马达皮质中的人细胞中被错误计算和下调。我们的数据表明,C9ORF72-HRE损害了MITF / TFEB核导入,从而破坏了C9-ALS / FTD中的自噬和加剧蛋白质缺陷。

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