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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The neuronal microRNA miR-326 acts in a feedback loop with notch and has therapeutic potential against brain tumors.
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The neuronal microRNA miR-326 acts in a feedback loop with notch and has therapeutic potential against brain tumors.

机译:神经元microRNA miR-326在带有缺口的反馈环中起作用,对脑肿瘤具有治疗潜力。

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摘要

Little is known of microRNA interactions with cellular pathways. Few reports have associated microRNAs with the Notch pathway, which plays key roles in nervous system development and in brain tumors. We previously implicated the Notch pathway in gliomas, the most common and aggressive brain tumors. While investigating Notch mediators, we noted microRNA-326 was upregulated following Notch-1 knockdown. This neuronally expressed microRNA was not only suppressed by Notch but also inhibited Notch proteins and activity, indicating a feedback loop. MicroRNA-326 was downregulated in gliomas via decreased expression of its host gene. Transfection of microRNA-326 into both established and stem cell-like glioma lines was cytotoxic, and rescue was obtained with Notch restoration. Furthermore, miR-326 transfection reduced glioma cell tumorigenicity in vivo. Additionally, we found microRNA-326 partially mediated the toxic effects of Notch knockdown. This work demonstrates a microRNA-326/Notch axis, shedding light on the biology of Notch and suggesting microRNA-326 delivery as a therapy.
机译:microRNA与细胞途径的相互作用知之甚少。很少有报道将microRNA与Notch通路相关联,Notch通路在神经系统发育和脑肿瘤中起关键作用。我们先前曾在神经胶质瘤(最常见和侵袭性脑瘤)中牵涉Notch通路。在调查Notch介体时,我们注意到在Notch-1敲低后microRNA-326被上调。这种神经元表达的microRNA不仅被Notch抑制,而且还抑制了Notch蛋白和活性,表明存在反馈环。通过降低其宿主基因的表达,MicroRNA-326在神经胶质瘤中被下调。将microRNA-326转染到既定的和干细胞样神经胶质瘤细胞系中均具有细胞毒性,可通过Notch修复获得挽救。此外,miR-326转染可降低体内神经胶质瘤细胞的致瘤性。此外,我们发现microRNA-326部分介导了Notch敲低的毒性作用。这项工作演示了microRNA-326 / Notch轴,阐明了Notch的生物学原理,并建议将microRNA-326交付作为一种疗法。

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