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基于Circle-seq的eccDNA合成方法及其作为用于高效miRNA过表达的无规范启动子载体的应用。

Circle-seq based method for eccDNA synthesis and its application as a canonical promoter independent vector for robust microRNA overexpression.

作者信息

Yu Jiaying, Zhang Haoran, Han Peng, Jiang Xianming, Li Jing, Li Bo, Yang Shaohua, He Chunxiao, Mao Shuang, Dang Yonghui, Xiang Xi

机构信息

Guangdong Provincial Key Laboratory of Digestive Cancer Research, the Seventh Affiliated Hospital of Sun Yat-sen University, Shenzhen, Guangdong 518107, China.

Scientific Research Center, The Seventh Affiliated Hospital of Sun Yat-sen University, Shenzhen, Guangdong 518107, China.

出版信息

Comput Struct Biotechnol J. 2023 Dec 20;23:358-368. doi: 10.1016/j.csbj.2023.12.019. eCollection 2024 Dec.

Abstract

Extrachromosomal circular DNA (eccDNA) has recently gained increasing attention due to its significant role in cancer and other pathophysiologic states. The majority of circular DNAs detected by Circle-seq are small-size eccDNAs with enigmatic functions. One major technical hurdle is to synthesize eccDNA for functional identification. Here, we describe CAES (ircle-seq based rtificial ccDNA ynthesis), a promising and reliable method for artificial eccDNA synthesis. Eight eccDNAs carrying different microRNA genes (eccMIR) found in gastric cancer tissues, ranging from 329 bp to 2189 bp in size, were created utilizing the CAES method. Exonuclease V and single restriction-endonuclease digestion identified the circular structure of synthetic eccDNAs. The DNA circularization efficiency afforded by CAES ranged from 15.6% to 31.1%, which was negatively correlated with the eccDNA length. In addition, we demonstrated that CAES-synthesized eccMIRs can express both miRNA-3p and - 5p molecules efficiently independent of a canonical promoter in human cell lines. Further assays proved that these eccMIRs were functional as they were able to repress the luciferase gene containing a miRNA-target sequence in the 3'UTR as well as the endogenous mRNA targets. Finally, kinetics study revealed that eccDNA exhibited a decay rate similar to the standard plasmids and linear DNA in cultured cells. Together, this study offers a rapid and convenient method for Circle-seq users to synthesize artificial eccDNAs. It also demonstrates the promising potential of eccMIR as a bacterial DNA-free vector for safe and robust miRNA overexpression in both basic research and therapeutic applications.

摘要

由于其在癌症和其他病理生理状态中的重要作用,染色体外环状DNA(eccDNA)最近越来越受到关注。通过Circle-seq检测到的大多数环状DNA是具有神秘功能的小尺寸eccDNA。一个主要的技术障碍是合成eccDNA用于功能鉴定。在这里,我们描述了CAES(基于Circle-seq的人工eccDNA合成),一种用于人工eccDNA合成的有前景且可靠的方法。利用CAES方法创建了8个在胃癌组织中发现的携带不同微小RNA基因的eccDNA(eccMIR),大小从329 bp到2189 bp不等。外切核酸酶V和单限制内切酶消化鉴定了合成eccDNA的环状结构。CAES提供的DNA环化效率在15.6%至31.1%之间,与eccDNA长度呈负相关。此外,我们证明CAES合成的eccMIR能够在人细胞系中独立于经典启动子高效表达miRNA - 3p和 - 5p分子。进一步的实验证明这些eccMIR具有功能,因为它们能够抑制3'UTR中含有miRNA靶序列的荧光素酶基因以及内源性mRNA靶标。最后,动力学研究表明eccDNA在培养细胞中的衰减速率与标准质粒和线性DNA相似。总之,这项研究为Circle-seq用户提供了一种快速便捷的方法来合成人工eccDNA。它还证明了eccMIR作为一种无细菌DNA载体在基础研究和治疗应用中安全且强大地过表达miRNA的潜在前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5279/10788182/2b63fcf0998f/ga1.jpg

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