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Contrasting silencing mechanisms of the same target mRNA by two regulatory RNAs in Escherichia coli

机译:对大肠杆菌中的两个调节RNA对比同一靶mRNA的沉默机制

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摘要

Small RNAs are key components of complex regulatory networks. These molecules can integrate multiple cellular signals to control specific target mRNAs. The recent development of high-throughput methods tremendously helped to characterize the full targetome of sRNAs. Using MS2-affinity purification coupled with RNA sequencing (MAPS) technology, we reveal the targetomes of two sRNAs, CyaR and RprA. Interestingly, both CyaR and RprA interact with the 5'-UTR of hdeD mRNA, which encodes an acid-resistance membrane protein. We demonstrate that CyaR classically binds to the RBS of hdeD, interfering with translational initiation. We identified an A/Urich motif on hdeD, which is bound by the RNA chaperone Hfq. Our results indicate that binding of this motif by Hfq is required for CyaR-induced degradation of hdeD mRNA. Additional data suggest that two molecules of RprA must bind the 5'-UTR of hdeD to block translation initiation. Surprisingly, while both CyaR and RprA sRNAs bind to the same motif on hdeD mRNA, RprA solely acts at the translational level, leaving the target RNA intact. By interchanging the seed region of CyaR and RprA sRNAs, we also swap their regulatory behavior. These results suggest that slight changes in the seed region could modulate the regulation of target mRNAs.
机译:小RNA是复杂监管网络的关键组成部分。这些分子可以整合多个蜂窝信号来控制特定的靶MRNA。最近的高通量方法的发展极大地帮助表征了SRNA的完整目标。使用与RNA测序(MAPS)技术相结合的MS2 - 亲和纯化,我们揭示了两个SRNA,Cyar和RPRA的胎面。有趣的是,Cyar和RPRA都与Hded mRNA的5'-UTR相互作用,其编码耐酸性膜蛋白。我们展示了Cyar经典与HDED的RBS染色,干扰翻译引发。我们在HDED上鉴定了一种/ uRICH主题,其被RNA伴侣HFQ结合。我们的结果表明,HFQ的HFC诱导的HDED mRNA的降解需要HFQ的结合。其他数据表明,两个rpra分子必须结合HDED的5'-UTR以阻断翻译开始。令人惊讶的是,虽然对CYAR和RPRA SRNA均结合HDED mRNA上的相同基序,但RPRA仅在平移水平上起作用,留下靶RNA完好无损。通过互换Cyar和RPRA SRNA的种子区域,我们也会互动监管行为。这些结果表明,种子区域的微小变化可以调节靶MRNA的调节。

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