调节circRNA内的miRNA结合位点以提高翻译效率

Q4 Engineering 中国科学技术大学学报 Pub Date : 2023-01-01 DOI:10.52396/justc-2023-0048
Kewei Zhang, Ge Shan, Liang Chen
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引用次数: 0

摘要

环状rna (circRNAs)是共价封闭的环状rna,其中一些保留翻译效力。然而,circRNA翻译效率的调控及其应用还有待探索。本研究利用T7 RNA聚合酶和优化的排列内含子-外显子(PIE)剪接策略,对含有翻译起始元件CVB3 IRES和荧光素酶蛋白编码序列的RNA进行体外转录和环化。然后转染环状rna并在培养细胞中翻译成活性荧光素酶。在荧光素酶编码序列的侧翼区域插入miRNA结合位点显著降低了circrna的翻译效率。萤火虫荧光素酶编码序列中miRNA结合位点的突变导致细胞中合成环状rna的翻译效率提高。我们还证明了特定mirna结合位点的突变也提高了合成环状rna的翻译效率。通过生物发光成像的进一步体内实验表明,miRNA结合位点的同义突变促进了裸鼠合成circRNA的翻译。本研究表明,miRNA结合位点的调节影响了体外和体内合成circRNAs的翻译效率,这可以作为未来临床成像应用的多功能工具。
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Modulating miRNA binding sites within circRNA for enhanced translation efficiency
Circular RNAs (circRNAs) are covalently closed circular RNAs, and some of them preserve translation potency. However, modulation of circRNA translation efficiency and its applications need to be explored. In this study, RNAs containing the translation initiation element CVB3 IRES and the coding sequence of luciferase protein were transcribed and circularized in vitro by T7 RNA polymerase and an optimized permutated intron‒exon (PIE) splicing strategy. The circularized RNAs were then transfected and translated into active luciferase in the cultured cells. Insertion of miRNA binding sites at the flanking region of the luciferase coding sequence significantly reduced the translation efficiency of the circRNAs. Mutations of the miRNA binding sites in the firefly luciferase coding sequence led to increased translation efficiency of synthetic circRNAs in cells. We also proved that mutations of the binding sites of specific miRNAs also enhanced the translation efficiency of synthetic circRNAs. Further in vivo experiments via bioluminescence imaging showed that synonymous mutation of the miRNA binding sites promoted synthetic circRNA translation in nude mice. This study demonstrates that the modulation of miRNA binding sites affects the translation efficiency of synthetic circRNAs in vitro and in vivo, which could be used as versatile tools for future applications in clinical imaging.
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中国科学技术大学学报
中国科学技术大学学报 Engineering-Mechanical Engineering
CiteScore
0.40
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5692
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