首页> 美国卫生研究院文献>PLoS Clinical Trials >dp53 Restrains Ectopic Neural Stem Cell Formation in the Drosophila Brain in a Non-Apoptotic Mechanism Involving Archipelago and Cyclin E
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dp53 Restrains Ectopic Neural Stem Cell Formation in the Drosophila Brain in a Non-Apoptotic Mechanism Involving Archipelago and Cyclin E

机译:dp53在涉及群岛和细胞周期蛋白E的非凋亡机制中抑制果蝇脑中异位神经干细胞的形成。

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摘要

Accumulating evidence suggests that tumor-initiating stem cells or cancer stem cells (CSCs) possibly originating from normal stem cells may be the root cause of certain malignancies. How stem cell homeostasis is impaired in tumor tissues is not well understood, although certain tumor suppressors have been implicated. In this study, we use the Drosophila neural stem cells (NSCs) called neuroblasts as a model to study this process. Loss-of-function of Numb, a key cell fate determinant with well-conserved mammalian counterparts, leads to the formation of ectopic neuroblasts and a tumor phenotype in the larval brain. Overexpression of the Drosophila tumor suppressor p53 (dp53) was able to suppress ectopic neuroblast formation caused by numb loss-of-function. This occurred in a non-apoptotic manner and was independent of Dacapo, the fly counterpart of the well-characterized mammalian p53 target p21 involved in cellular senescence. The observation that dp53 affected Edu incorporation into neuroblasts led us to test the hypothesis that dp53 acts through regulation of factors involved in cell cycle progression. Our results show that the inhibitory effect of dp53 on ectopic neuroblast formation was mediated largely through its regulation of Cyclin E (Cyc E). Overexpression of Cyc E was able to abrogate dp53′s ability to rescue numb loss-of-function phenotypes. Increasing Cyc E levels by attenuating Archipelago (Ago), a recently identified transcriptional target of dp53 and a negative regulator of Cyc E, had similar effects. Conversely, reducing Cyc E activity by overexpressing Ago blocked ectopic neuroblast formation in numb mutant. Our results reveal an intimate connection between cell cycle progression and NSC self-renewal vs. differentiation control, and indicate that p53-mediated regulation of ectopic NSC self-renewal through the Ago/Cyc E axis becomes particularly important when NSC homeostasis is perturbed as in numb loss-of-function condition. This has important clinical implications.
机译:越来越多的证据表明,可能源自正常干细胞的肿瘤起始干细胞或癌症干细胞(CSC)可能是某些恶性肿瘤的根本原因。尽管已经牵涉到某些肿瘤抑制物,但尚不清楚如何在肿瘤组织中损害干细胞稳态。在这项研究中,我们使用果蝇神经干细胞(NSC)称为Neuroblasts作为模型来研究这一过程。 Numb的功能丧失是哺乳动物保存良好的关键细胞命运决定因素,它导致幼虫大脑中异位成神经细胞和肿瘤表型的形成。果蝇肿瘤抑制因子p53(dp53)的过表达能够抑制麻木的功能丧失引起的异位神经母细胞形成。这以非凋亡的方式发生,并且独立于Dacapo,后者是与细胞衰老相关的特性良好的哺乳动物p53靶标p21的果蝇对应物。 dp53影响Edu掺入成神经细胞的观察结果使我们检验了dp53通过调节参与细胞周期进程的因子起作用的假说。我们的结果表明,dp53对异位成神经细胞形成的抑制作用主要是通过其对细胞周期蛋白E(Cyc E)的调节介导的。 Cyc E的过表达能够消除dp53挽救麻木的功能丧失表型的能力。通过减弱群岛(Ago)(最近鉴定的dp53的转录靶标和Cyc E的负调节剂)来提高Cyc E的水平具有类似的作用。相反,通过过表达Ago降低Cyc E活性可阻止numb突变体中异位神经母细胞的形成。我们的结果揭示了细胞周期进程与NSC自我更新与分化控制之间的密切联系,并表明当NSC稳态受到干扰时,p53介导的通过Ago / Cyc E轴对异位NSC自我更新的调节变得尤为重要。麻木的功能丧失状况。这具有重要的临床意义。

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