Park Wonkeun, Zhai Jixian, Lee Jung-Youn
Department of Plant and Soil Sciences, Delaware Biotechnology Institute, University of Delaware, Newark, DE 19711, USA.
Plant Cell Rep. 2009 Mar;28(3):469-80. doi: 10.1007/s00299-008-0651-5. Epub 2008 Dec 9.
Gene silencing is a useful technique for elucidating biological function of genes by knocking down their expression. Recently developed artificial microRNAs (amiRNAs) exploit an endogenous gene silencing mechanism that processes natural miRNA precursors to small silencing RNAs that target transcripts for degradation. Based on natural miRNA structures, amiRNAs are commonly designed such that they have a few mismatching nucleotides with respect to their target sites as well as within mature amiRNA duplexes. In this study, we performed an analysis in which the conventional and modified form of an amiRNA was compared side by side. We showed that the amiRNA containing 5' mismatch with its amiRNA* and perfect complementarity to its target gene acted as a highly potent gene silencing agent against AP1, achieving a desired null mutation effect. In addition, a simultaneous silencing of two independent genes, AP1 and CAL1 was tested by employing a multimeric form of amiRNAs. Advantages and potential disadvantages of using amiRNAs with perfect complementarity to the target gene are discussed. The results presented here should be helpful in designing more specific and effective gene silencing agents.
基因沉默是一种通过降低基因表达来阐明基因生物学功能的有用技术。最近开发的人工微小RNA(amiRNA)利用一种内源性基因沉默机制,该机制将天然miRNA前体加工成靶向转录本进行降解的小沉默RNA。基于天然miRNA结构,通常设计amiRNA使其相对于其靶位点以及成熟amiRNA双链体内有一些错配核苷酸。在本研究中,我们进行了一项分析,将amiRNA的常规形式和修饰形式并排比较。我们表明,与其amiRNA*具有5'错配且与其靶基因完全互补的amiRNA作为针对AP1的高效基因沉默剂,实现了所需的无效突变效应。此外,通过采用多聚体形式的amiRNA测试了对两个独立基因AP1和CAL1的同时沉默。讨论了使用与靶基因完全互补的amiRNA的优点和潜在缺点。此处呈现的结果应有助于设计更特异和有效的基因沉默剂。