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Drug-induced Stress Granule Formation Protects Sensory Hair Cells in Mouse Cochlear Explants During Ototoxicity

机译:药物诱导的应激颗粒形成在耳毒性过程中保护小鼠耳蜗外植体的感觉毛细胞。

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摘要

Stress granules regulate RNA translation during cellular stress, a mechanism that is generally presumed to be protective, since stress granule dysregulation caused by mutation or ageing is associated with neurodegenerative disease. Here, we investigate whether pharmacological manipulation of the stress granule pathway in the auditory organ, the cochlea, affects the survival of sensory hair cells during aminoglycoside ototoxicity, a common cause of acquired hearing loss. We show that hydroxamate (-)-9, a silvestrol analogue that inhibits eIF4A, induces stress granule formation in both an auditory cell line and ex-vivo cochlear cultures and that it prevents ototoxin-induced hair-cell death. In contrast, preventing stress granule formation using the small molecule inhibitor ISRIB increases hair-cell death. Furthermore, we provide the first evidence of stress granule formation in mammalian hair cells in-vivo triggered by aminoglycoside treatment. Our results demonstrate that pharmacological induction of stress granules enhances cell survival in native-tissue, in a clinically-relevant context. This establishes stress granules as a viable therapeutic target not only for hearing loss but also other neurodegenerative diseases.
机译:应激颗粒在细胞应激过程中调节RNA的翻译,这种机制通常被认为是保护性的,因为由突变或衰老引起的应激颗粒失调与神经退行性疾病有关。在这里,我们调查在听觉器官,耳蜗,应力颗粒通路的药理操作是否会影响氨基糖苷耳毒性(获得性听力损失的常见原因)期间感觉毛细胞的存活。我们显示异羟肟酸酯(-)-9,抑制eIF4A的silvestrol类似物,在听觉细胞系和离体人工耳蜗文化中诱导应激颗粒形成,并且它防止了耳毒素诱导的毛细胞死亡。相比之下,使用小分子抑制剂ISRIB防止应激颗粒形成会增加毛细胞死亡。此外,我们提供了由氨基糖苷治疗触发的体内毛发细胞应力颗粒形成的第一个证据。我们的结果表明,在临床上相关的背景下,药理学上诱导应激颗粒可以增强天然组织中的细胞存活率。这将应力颗粒确立为不仅对于听力损失而且对于其他神经退行性疾病的可行治疗靶标。

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