College of Agronomy, Henan Agricultural University, Zhengzhou, China.
Department of Biological Sciences, Michigan Technological University, Houghton, Michigan, USA.
Plant Biotechnol J. 2023 Sep;21(9):1799-1811. doi: 10.1111/pbi.14091. Epub 2023 Jul 1.
MicroRNAs (miRNAs) are small non-coding RNA molecules that play a crucial role in gene regulation. They are produced through an enzyme-guided process called dicing and have an asymmetrical structure with two nucleotide overhangs at the 3' ends. Artificial microRNAs (amiRNAs or amiRs) are designed to mimic the structure of miRNAs and can be used to silence specific genes of interest. Traditionally, amiRNAs are designed based on an endogenous miRNA precursor with certain mismatches at specific positions to increase their efficiency. In this study, the authors modified the highly expressed miR168a in Arabidopsis thaliana by replacing the single miR168 stem-loop/duplex with tandem asymmetrical amiRNA duplexes that follow the statistical rules of miRNA secondary structures. These tandem amiRNA duplexes, called "two-hit" amiRNAs, were shown to have a higher efficiency in silencing GFP and endogenous PDS reporter genes compared to traditional "one-hit" amiRNAs. The authors also demonstrated the effectiveness of "two-hit" amiRNAs in silencing genes involved in miRNA, tasiRNA, and hormone signalling pathways, individually or in families. Importantly, "two-hit" amiRNAs were also able to over-express endogenous miRNAs for their functions. The authors compare "two-hit" amiRNA technology with CRISPR/Cas9 and provide a web-based amiRNA designer for easy design and wide application in plants and even animals.
微小 RNA(miRNAs)是一种小的非编码 RNA 分子,在基因调控中起着至关重要的作用。它们通过一种称为切割的酶指导过程产生,具有不对称的结构,在 3' 末端有两个核苷酸突出。人工微小 RNA(amiRNA 或 amiRs)被设计为模拟 miRNA 的结构,可以用于沉默特定感兴趣的基因。传统上,amiRNA 是根据具有特定位置上某些错配的内源性 miRNA 前体设计的,以提高其效率。在这项研究中,作者通过用遵循 miRNA 二级结构统计规则的串联不对称 amiRNA 双链体替换拟南芥中高度表达的 miR168a 的单个 miR168 茎环/双链体,对 miR168a 进行了修饰。这些串联 amiRNA 双链体称为“双敲”amiRNA,与传统的“单敲”amiRNA 相比,在沉默 GFP 和内源 PDS 报告基因方面效率更高。作者还证明了“双敲”amiRNA 单独或在家族中沉默参与 miRNA、tasiRNA 和激素信号通路的基因的有效性。重要的是,“双敲”amiRNA 还能够过表达内源 miRNA 以发挥其功能。作者将“双敲”amiRNA 技术与 CRISPR/Cas9 进行了比较,并提供了一个基于网络的 amiRNA 设计器,便于在植物甚至动物中进行设计和广泛应用。