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Fluorescent aminoglycosides reveal intracellular trafficking routes in mechanosensory hair cells

机译:荧光氨基糖苷揭示了机械感觉毛细胞的细胞内运输途径

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摘要

Aminoglycosides (AGs) are broad-spectrum antibiotics that are associated with kidney damage, balance disorders, and permanent hearing loss. This damage occurs primarily by killing of proximal tubule kidney cells and mechanosensory hair cells, though the mechanisms underlying cell death are not clear. Imaging molecules of interest in living cells can elucidate how molecules enter cells, traverse intracellular compartments, and interact with sites of activity. Here, we have imaged fluorescently labeled AGs in live zebrafish mechanosensory hair cells. We determined that AGs enter hair cells via both nonendocytic and endocytic pathways. Both routes deliver AGs from the extracellular space to lysosomes, and structural differences between AGs alter the efficiency of this delivery. AGs with slower delivery to lysosomes were immediately toxic to hair cells, and impeding lysosome delivery increased AG-induced death. Therefore, pro-death cascades induced at early time points of AG exposure do not appear to derive from the lysosome. Our findings help clarify how AGs induce hair cell death and reveal properties that predict toxicity. Establishing signatures for AG toxicity may enable more efficient evaluation of AG treatment paradigms and structural modifications to reduce hair cell damage. Further, this work demonstrates how following fluorescently labeled drugs at high resolution in living cells can reveal important details about how drugs of interest behave.
机译:氨基糖苷类(AGs)是广谱抗生素,与肾脏损害,平衡失调和永久性听力损失有关。这种损害主要通过杀死近端肾小管肾细胞和机械感觉毛细胞而发生,尽管尚不清楚引起细胞死亡的机制。对活细胞中感兴趣的分子进行成像可以阐明分子如何进入细胞,穿越细胞内区室并与活性位点相互作用。在这里,我们对活的斑马鱼机械感应毛细胞中的荧光标记AG进行了成像。我们确定AGs通过非内吞和内吞途径进入毛细胞。两种途径都将AGs从细胞外空间传递到溶酶体,并且AGs之间的结构差异改变了这种传递的效率。向溶酶体的传递较慢的AG立即对毛细胞有毒,阻止溶酶体的传递会增加AG诱导的死亡。因此,在AG暴露的早期时间点诱导的促死亡级联似乎不是来自溶酶体。我们的发现有助于阐明AG如何诱导毛细胞死亡,并揭示预测毒性的特性。建立AG毒性的特征可以使AG治疗范例和结构修饰减少毛细胞损伤的效率更高。此外,这项工作证明了在活细胞中高分辨率追踪荧光标记的药物如何能够揭示有关目标药物行为的重要细节。

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