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一种let-7至miR-125的微小RNA开关调控果蝇的神经元完整性和寿命。

A let-7-to-miR-125 MicroRNA Switch Regulates Neuronal Integrity and Lifespan in Drosophila.

作者信息

Chawla Geetanjali, Deosthale Padmini, Childress Sue, Wu Yen-Chi, Sokol Nicholas S

机构信息

Department of Biology, Indiana University, Bloomington, Bloomington, Indiana, United States of America.

Medical Sciences Program, Indiana University, Bloomington, Bloomington, Indiana, United States of America.

出版信息

PLoS Genet. 2016 Aug 10;12(8):e1006247. doi: 10.1371/journal.pgen.1006247. eCollection 2016 Aug.

Abstract

Messenger RNAs (mRNAs) often contain binding sites for multiple, different microRNAs (miRNAs). However, the biological significance of this feature is unclear, since such co-targeting miRNAs could function coordinately, independently, or redundantly with one another. Here, we show that two co-transcribed Drosophila miRNAs, let-7 and miR-125, non-redundantly regulate a common target, the transcription factor Chronologically Inappropriate Morphogenesis (Chinmo). We first characterize novel adult phenotypes associated with loss of both let-7 and miR-125, which are derived from a common, polycistronic transcript that also encodes a third miRNA, miR-100. Consistent with the coordinate upregulation of all three miRNAs in aging flies, these phenotypes include brain degeneration and shortened lifespan. However, transgenic rescue analysis reveal separable roles for these miRNAs: adult miR-125 but not let-7 mutant phenotypes are associated with ectopic Chinmo expression in adult brains and are suppressed by chinmo reduction. In contrast, let-7 is predominantly responsible for regulating chinmo during nervous system formation. These results indicate that let-7 and miR-125 function during two distinct stages, development and adulthood, rather than acting at the same time. These different activities are facilitated by an increased rate of processing of let-7 during development and a lower rate of decay of the accumulated miR-125 in the adult nervous system. Thus, this work not only establishes a key role for the highly conserved miR-125 in aging. It also demonstrates that two co-transcribed miRNAs function independently during distinct stages to regulate a common target, raising the possibility that such biphasic control may be a general feature of clustered miRNAs.

摘要

信使核糖核酸(mRNA)通常包含多个不同微小核糖核酸(miRNA)的结合位点。然而,这一特征的生物学意义尚不清楚,因为这些共同靶向的miRNA可能相互协同、独立或冗余发挥作用。在此,我们表明两个共同转录的果蝇miRNA,即let-7和miR-125,以非冗余方式调控一个共同靶点,即转录因子时序不当形态发生(Chinmo)。我们首先描述了与let-7和miR-125缺失相关的新的成体表型,它们源自一个共同的多顺反子转录本,该转录本还编码第三个miRNA,即miR-100。与衰老果蝇中所有三种miRNA的协同上调一致,这些表型包括脑退化和寿命缩短。然而,转基因拯救分析揭示了这些miRNA的可分离作用:成年miR-125而非let-7突变体表型与成年大脑中Chinmo的异位表达相关,并通过降低Chinmo水平得到抑制。相反,let-7在神经系统形成过程中主要负责调控Chinmo。这些结果表明,let-7和miR-125在发育和成年这两个不同阶段发挥作用,而非同时起作用。发育过程中let-7加工速率的增加以及成年神经系统中积累的miR-125较低的降解速率促进了这些不同的活性。因此,这项工作不仅确立了高度保守的miR-125在衰老中的关键作用。它还表明两个共同转录的miRNA在不同阶段独立发挥作用以调控一个共同靶点,这增加了这种双相控制可能是成簇miRNA的普遍特征的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45c9/4979967/7ee1bf6265b9/pgen.1006247.g001.jpg

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