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Post-developmental microRNA expression is required for normal physiology, and regulates aging in parallel to insulin/IGF-1 signaling in C. elegans

机译:正常生理需要发育后的microRNA表达,并与线虫中的胰岛素/ IGF-1信号传导同时调节衰老

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Regulation of gene expression by microRNAs (miRNAs) is essential for normal development, but the roles of miRNAs in the physiology of adult animals are poorly understood. We have isolated a conditional allele of DGCR8/pash-1, which allows reversible and rapid inactivation of miRNA synthesis in vivo in Caenorhabditis elegans. This is a powerful new tool that allows dissection of post-developmental miRNA functions. We demonstrate that continuous synthesis of miRNAs is dispensable for cellular viability but critical for the physiology of adult animals. Loss of miRNA synthesis in the adult reduces lifespan and results in rapid aging. The insulin/IGF-1 signaling pathway is a critical determinant of lifespan, and is modulated by miRNAs. We find that although miRNA expression is required for some mechanisms of lifespan extension, it is not essential for the longevity of animals lacking insulin/IGF-1 signaling. Further, misregulated insulin/IGF-1 signaling cannot account for the reduced lifespan caused by disruption of miRNA synthesis. We show that miRNAs act in parallel with insulin/IGF-1 signaling to regulate a shared set of downstream genes important for physiological processes that determine lifespan. We conclude that coordinated transcriptional and post-transcriptional regulation of gene expression promotes longevity.
机译:microRNA(miRNA)对基因表达的调控对于正常发育至关重要,但人们对miRNA在成年动物生理中的作用了解甚少。我们已分离出DGCR8 / pash-1的条件等位基因,该条件允许在秀丽隐杆线虫体内体内可逆和快速失活miRNA合成。这是一个功能强大的新工具,可以解剖发育后的miRNA功能。我们证明,miRNA的连续合成对于细胞活力是必不可少的,但对于成年动物的生理至关重要。成人中miRNA合成的减少会缩短寿命,并导致快速衰老。胰岛素/ IGF-1信号传导途径是寿命的关键决定因素,并受miRNA调节。我们发现,尽管miRNA表达对于某些延长寿命的机制是必需的,但对于缺乏胰岛素/ IGF-1信号传导的动物的寿命而言,这并不是必需的。此外,胰岛素/ IGF-1信号调节失调不能解释因miRNA合成中断而导致的寿命缩短。我们显示,miRNA与胰岛素/ IGF-1信号传导并行作用,以调节对决定生命周期的生理过程重要的下游基因的共享集。我们得出结论,基因表达的协调转录和转录后调控可促进寿命。

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