环状RNA过度表达的改进模型:使用肌动蛋白内含子显示高循环效率。

Feiya Li, Juanjuan Lyu, Yang Yang, Qiwei Yang, Cristian Santos, Burton B. Yang
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引用次数: 0

摘要

传统上,T4 td基因的第1组内含子用于产生外源环状序列。然而,T4系统已被证明在表达环状RNA(circRNA)方面相当低效。在这里,开发了一种新的方法来表达具有高环化效率的环状序列,以增强对未来circRNA功能研究的信心。将由肌动蛋白内含子(15nt、30nt、60nt、100nt、180nt)和T4内含子构建的具有不同长度的CircRNA表达质粒引入人和小鼠细胞系293T和B16中。连接检测和测序用于确定内含子的成功环化及其表达效率。中等长度的肌动蛋白内含子(60-nt-100-nt)显示出显著提高的环化效率,而内含子100-nt在大多数条件下显示出最佳效率。RNA下拉测定被设计用于沉淀与内含子和内含子/外显子连接结合的剪接因子。通过质谱(MS)分析沉淀的蛋白质,旨在确定高环化效率背后可能的潜在机制。该表达系统已使用不同的circRNA进行了验证,这种方法显示出有助于扩大circRNA研究领域的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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An Improved Model for Circular RNA Overexpression: Using the Actin Intron Reveals High Circularization Efficiency

Traditionally, the group 1 intron of the T4 td gene is used to generate a foreign circular sequence. However, the T4 system has been shown to be fairly inefficient in expressing circular RNA (circRNA). Here, a new method is developed to express circular sequences with high circularization efficiency to strengthen the confidence for future circRNA functional studies. CircRNA expression plasmids, constructed with different lengths derived from the actin intron (15-nt, 30-nt, 60-nt, 100-nt, 180-nt) and T4 intron, are introduced into human and mouse cell lines 293T and B16. Junction detection and sequencing are used to determine successful circularization of introns and their expression efficiencies. An actin intron with a medium length (60-nt–100-nt) shows significantly increased efficiency of circularization, whereas intron-100-nt shows the best efficiency in most conditions. RNA pull-down assays are designed to precipitate the splicing factors that are bound to the introns and intron/exon junction. The precipitated proteins are analyzed by mass spectrometry (MS), aiming to identify the possible underlying mechanism behind the high circularization efficiency. This expression system has been validated using different circRNAs, and such method shows potential in contributing to the expanding field of circRNA studies.

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