首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Nucleic acid binding agents exert local toxic effects on neurites via a non-nuclear mechanism.
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Nucleic acid binding agents exert local toxic effects on neurites via a non-nuclear mechanism.

机译:核酸结合剂通过非核机制对神经突发挥局部毒性作用。

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摘要

The mechanism by which drugs that target nucleic acids cause neurotoxicity is not well described. We characterized the neurotoxicity of Hoechst 33342 (bis-benzimide), a common cell permeable nuclear dye, in primary neuronal cultures. The mechanism of cell death was not apoptotic, as death is rapid, not accompanied by typical nuclear morphological changes, and is insensitive to inhibitors of transcription, translation and caspase activity. In addition, free-radical scavenging agents failed to attenuate cell death, and damage was not accompanied by mitochondrial dysfunction. Neuronal processes of cells exposed to Hoechst 33342 display dramatic fragmentation prior to cell death. When this compound was applied selectively to the distal axons of sympathetic neurons grown in compartmented cultures, the distal axons were destroyed. However, the proximal processes present in the cell body compartment were spared, demonstrating direct axonal toxicity rather than a remote effect of nuclear dysfunction. Other cell-permeable nucleic acid binding dyes similarly caused rapid dendritic and axonal toxicity. The hypothesis that these nucleic acid binding dyes target RNA localized to dendrites and axons is supported by observations that RNaseV1 induced similar, rapid neurite fragmentation. We conclude that the neurotoxic effects of nucleic acid binding compounds are mediated, at least in part, by direct neurite injury, which does not require involvement of the cell body and nucleus.
机译:还没有很好地描述靶向核酸的药物引起神经毒性的机制。我们表征了Hoechst 33342(双-苯甲酰胺),一种常见的细胞可渗透核染料,在原代神经元培养物中的神经毒性。细胞死亡的机制不是凋亡的,因为死亡是快速的,不伴随典型的核形态变化,并且对转录,翻译和胱天蛋白酶活性的抑制剂不敏感。另外,自由基清除剂不能减轻细胞死亡,并且损伤不伴随线粒体功能障碍。暴露于Hoechst 33342的细胞的神经元过程在细胞死亡之前显示出明显的碎片。当将此化合物选择性地应用于隔室培养物中生长的交感神经元的远端轴突时,远端轴突被破坏。然而,细胞体腔室中存在的近端过程被幸免了,表明直接轴突毒性而不是核功能障碍的远程影响。其他可渗透细胞的核酸结合染料同样会引起快速的树突和轴突毒性。这些核酸结合染料靶向定位于树突和轴突的RNA的假设得到了RNaseV1诱导相似的快速神经突碎片观察的支持。我们得出结论,核酸结合化合物的神经毒性作用至少部分地由直接神经突损伤介导,其不需要细胞体和细胞核参与。

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