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Extracellular vesicles transfer nuclear Abl-dependent and radiation-induced miR-34c into unirradiated cells to cause bystander effects

机译:细胞外囊泡将核Abl依赖和辐射诱导的miR-34c转移到未辐射的细胞中从而引起旁观者效应

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摘要

Ionizing radiation (IR) not only activates DNA damage response (DDR) in irradiated cells but also induces bystander effects (BE) in cells not directly targeted by radiation. How DDR pathways activated in irradiated cells stimulate BE is not well understood. We show here that extracellular vesicles secreted by irradiated cells (EV-IR), but not those from unirradiated controls (EV-C), inhibit colony formation in unirradiated cells by inducing reactive oxygen species (ROS). We found that µEV-IR from Abl nuclear localization signal–mutated (Abl-µNLS) cells could not induce ROS, but expression of wild-type Abl restored that activity. Because nuclear Abl stimulates miR-34c biogenesis, we measured miR-34c in EV and found that its levels correlated with the ROS-inducing activity of EV. We then showed that EV from miR-34c minigene–transfected, but unirradiated cells induced ROS; and transfection with miR-34c-mimic, without radiation or EV addition, also induced ROS. Furthermore, EV-IR from miR34-family triple-knockout cells could not induce ROS, whereas EV-IR from wild-type cells could cause miR-34c increase and ROS induction in the miR-34 triple-knockout cells. These results establish a novel role for extracellular vesicles in transferring nuclear Abl-dependent and radiation-induced miR-34c into unirradiated cells to cause bystander oxidative stress.
机译:电离辐射(IR)不仅会激活受辐照细胞中的DNA损伤反应(DDR),而且会在未受到辐射直接靶向的细胞中诱导旁观者效应(BE)。尚未完全了解受辐照细胞中激活的DDR途径如何刺激BE。我们在这里显示受辐照细胞(EV-IR)分泌的细胞外囊泡,但未受辐照的对照(EV-C)分泌的胞外囊泡通过诱导活性氧(ROS)抑制未辐照细胞中的菌落形成。我们发现,来自Abl核定位信号突变(Abl-µNLS)细胞的µEV-IR不能诱导ROS,但是野生型Abl的表达恢复了该活性。由于核Abl刺激miR-34c的生物发生,因此我们在EV中测量了miR-34c,发现其水平与EV的ROS诱导活性相关。然后,我们证明了来自miR-34c小基因转染但未照射细胞的EV诱导了ROS。 miR-34c-mimic转染(不添加放射线或EV)也会诱导ROS。此外,来自miR34家族三敲除细胞的EV-IR不能诱导ROS,而来自野生型细胞的EV-IR可以引起miR-34c三联敲除细胞中的miR-34c增加和ROS诱导。这些结果为细胞外囊泡在将核Abl依赖和辐射诱导的miR-34c转移到未辐射的细胞中引起旁观者的氧化应激中建立了新的作用。

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