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The role of retrograde intraflagellar transport genes in aminoglycoside-induced hair cell death

机译:逆行鞭毛内转运基因在氨基糖苷诱导的毛细胞死亡中的作用

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Sensory hair cells are susceptible to numerous insults, including certain therapeutic medications like aminoglycoside antibiotics, and hearing and balance disorders are often a dose-limiting side effect of these medications. We show that mutations in multiple genes in both the retrograde intraflagellar transport (IFT) motor and adaptor complexes lead to resistance to aminoglycoside-induced hair cell death. These mutations also lead to defects in the entry of both aminoglycosides and the vital dye FM1-43 into hair cells, both processes that depend on hair cell mechanotransduction activity. However, the trafficking of proteins important for mechanotransduction activity is not altered by these mutations. Our data suggest that both retrograde IFT motor and adaptor complex genes are playing a role in aminoglycoside toxicity through affecting aminoglycoside uptake into hair cells.
机译:感觉毛细胞容易受到多种伤害,包括某些治疗药物,如氨基糖苷类抗生素,并且听力和平衡障碍通常是这些药物的剂量限制性副作用。我们显示,逆行鞭毛内运输(IFT)电机和适配器复合物中的多个基因中的突变导致对氨基糖苷诱导的毛细胞死亡的抵抗。这些突变还导致氨基糖苷和重要染料FM1-43进入毛细胞的缺陷,这两个过程都依赖于毛细胞的机械转导活性。但是,这些突变不会改变对于机械转导活性重要的蛋白质的运输。我们的数据表明,逆行IFT马达和衔接子复杂基因都通过影响氨基糖苷对毛细胞的吸收而在氨基糖苷毒性中发挥作用。

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