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MicroRNA miR-308 regulates dMyc through a negative feedback loop in Drosophila

机译:MicroRNA miR-308通过果蝇中的负反馈回路调节dMyc

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The abundance of Myc protein must be exquisitely controlled to avoid growth abnormalities caused by too much or too little Myc. An intriguing mode of regulation exists in which Myc protein itself leads to reduction in its abundance. We show here that dMyc binds to the miR-308 locus and increases its expression. Using our gain-of-function approach, we show that an increase in miR-308 causes a destabilization of dMyc mRNA and reduced dMyc protein levels. In vivo knockdown of miR-308 confirmed the regulation of dMyc levels in embryos. This regulatory loop is crucial for maintaining appropriate dMyc levels and normal development. Perturbation of the loop, either by elevated miR-308 or elevated dMyc, caused lethality. Combining elevated levels of both, therefore restoring balance between miR-308 and dMyc levels, resulted in lower apoptotic activity and suppression of lethality. These results reveal a sensitive feedback mechanism that is crucial to prevent the pathologies caused by abnormal levels of dMyc.
机译:必须精确控制Myc蛋白质的丰度,以避免Myc过多或过少引起的生长异常。存在一种有趣的调节模式,其中Myc蛋白本身导致其丰度降低。我们在这里显示dMyc与miR-308基因座结合并增加其表达。使用我们的功能获得方法,我们显示miR-308的增加会导致dMyc mRNA不稳定并降低dMyc蛋白水平。 miR-308的体内敲除证实了胚胎中dMyc水平的调节。该调节回路对于维持适当的dMyc水平和正常发育至关重要。升高的miR-308或升高的dMyc对环造成的干扰会导致致命性。结合两者的升高水平,从而恢复miR-308和dMyc水平之间的平衡,导致较低的凋亡活性并抑制致死性。这些结果揭示了一种敏感的反馈机制,对于防止由dMyc异常水平引起的病理至关重要。

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