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miRNA 的初级转录本编码调节肽。

Primary transcripts of microRNAs encode regulatory peptides.

机构信息

1] Université de Toulouse, UPS, UMR5546, Laboratoire de Recherche en Sciences Végétales, 31326 Castanet-Tolosan, France [2] Centre National de la Recherche Scientifique, CNRS, UMR5546, 31326 Castanet-Tolosan, France.

Fédération de Recherches FR3450 CNRS, 31326 Castanet-Tolosan, France.

出版信息

Nature. 2015 Apr 2;520(7545):90-3. doi: 10.1038/nature14346. Epub 2015 Mar 25.

Abstract

MicroRNAs (miRNAs) are small regulatory RNA molecules that inhibit the expression of specific target genes by binding to and cleaving their messenger RNAs or otherwise inhibiting their translation into proteins. miRNAs are transcribed as much larger primary transcripts (pri-miRNAs), the function of which is not fully understood. Here we show that plant pri-miRNAs contain short open reading frame sequences that encode regulatory peptides. The pri-miR171b of Medicago truncatula and the pri-miR165a of Arabidopsis thaliana produce peptides, which we term miPEP171b and miPEP165a, respectively, that enhance the accumulation of their corresponding mature miRNAs, resulting in downregulation of target genes involved in root development. The mechanism of miRNA-encoded peptide (miPEP) action involves increasing transcription of the pri-miRNA. Five other pri-miRNAs of A. thaliana and M. truncatula encode active miPEPs, suggesting that miPEPs are widespread throughout the plant kingdom. Synthetic miPEP171b and miPEP165a peptides applied to plants specifically trigger the accumulation of miR171b and miR165a, leading to reduction of lateral root development and stimulation of main root growth, respectively, suggesting that miPEPs might have agronomical applications.

摘要

微小 RNA(miRNAs)是一类通过与靶信使 RNA 结合并切割其信使 RNA 或抑制其翻译成蛋白质来抑制特定靶基因表达的小调节 RNA 分子。miRNAs 作为更大的初级转录物(pri-miRNAs)转录,其功能尚未完全了解。在这里,我们表明植物 pri-miRNAs 包含编码调节肽的短开放阅读框序列。蒺藜苜蓿的 pri-miR171b 和拟南芥的 pri-miR165a 产生肽,我们分别将其命名为 miPEP171b 和 miPEP165a,它们分别增强了相应成熟 miRNAs 的积累,导致参与根发育的靶基因下调。miRNA 编码肽(miPEP)作用的机制涉及 pri-miRNA 的转录增加。拟南芥和蒺藜苜蓿的其他 5 个 pri-miRNAs 编码活性的 miPEPs,表明 miPEPs 在整个植物界广泛存在。合成的 miPEP171b 和 miPEP165a 肽应用于植物中特异性地触发 miR171b 和 miR165a 的积累,分别导致侧根发育减少和主根生长刺激,表明 miPEPs 可能具有农业应用。

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