Wang Zhiguo
Department of Medicine, Montreal Heart Institute, University of Montreal, Montreal, QC, Canada.
Methods Mol Biol. 2011;676:51-7. doi: 10.1007/978-1-60761-863-8_4.
The multiple-target AMO technology or MT-AMO technology is an innovative strategy, which confers on a single AMO fragment the capability of targeting multiple miRNAs. This modified AMO is single-stranded 2'-O-methyl-modified oligoribonucleotides carrying multiple AMO units, which are engineered into a single unit and are able to simultaneously silence multiple-target miRNAs or multiple miRNA seed families. Studies suggest that the MT-AMO is an improved approach for miRNA target finding and miRNA function validation; it not only enhances the effectiveness of targeting miRNAs but also confers diversity of actions. It has been successfully used to identify target genes and cellular function of several oncogenic miRNAs and of the muscle-specific miRNAs (Lu et al., Nucleic Acids Res 37:e24-e33, 2009). This novel strategy may find its broad application as a useful tool in miRNA research for exploring biological processes involving multiple miRNAs and multiple genes, and the potential as an miRNA therapy for human disease such as cancer and cardiac disorders. This technology was developed by my research laboratory in collaboration with Yang's group (Lu et al., Nucleic Acids Res 37:e24-e33, 2009), and it is similar but distinct from the miRNA Sponge technology developed by Sharp's laboratory in 2007 (Ebert et al., Nat Methods 4:721-726, 2007) and modified by Gentner et al. (Nat Methods 6:63-66, 2009).
多靶点反义寡核苷酸技术(MT-AMO技术)是一种创新策略,它赋予单个反义寡核苷酸片段靶向多个微小RNA(miRNA)的能力。这种经过修饰的反义寡核苷酸是携带多个反义寡核苷酸单元的单链2'-O-甲基修饰的寡核糖核苷酸,这些单元被设计成一个单一单元,能够同时沉默多个靶点的miRNA或多个miRNA种子家族。研究表明,MT-AMO是一种用于miRNA靶点发现和miRNA功能验证的改进方法;它不仅提高了靶向miRNA的有效性,还赋予了作用的多样性。它已成功用于鉴定几种致癌miRNA和肌肉特异性miRNA的靶基因和细胞功能(Lu等人,《核酸研究》37:e24-e33,2009年)。这种新策略可能会作为一种有用的工具在miRNA研究中广泛应用,用于探索涉及多个miRNA和多个基因的生物学过程,以及作为治疗癌症和心脏疾病等人类疾病的miRNA疗法的潜力。这项技术是由我的研究实验室与杨的团队合作开发的(Lu等人,《核酸研究》37:e24-e33,2009年),它与夏普实验室在2007年开发并由根特纳等人修改的miRNA海绵技术(Ebert等人,《自然方法》4:721-726,2007年;根特纳等人,《自然方法》6:63-66,2009年)相似但又不同。