Chak Li-Ling, Okamura Katsutomo
Temasek Life Sciences Laboratory, 1 Research Link, National University of Singapore Singapore, Singapore.
Temasek Life Sciences Laboratory, 1 Research Link, National University of Singapore Singapore, Singapore ; School of Biological Sciences, Nanyang Technological University Singapore, Singapore.
Front Genet. 2014 Jun 10;5:172. doi: 10.3389/fgene.2014.00172. eCollection 2014.
A general feature of Argonaute-dependent small RNAs is their base-paired precursor structures, and precursor duplex structures are often required for confident annotation of miRNA genes. However, this rule has been broken by discoveries of functional small RNA species whose precursors lack a predictable double-stranded (ds-) RNA structure, arguing that duplex structures are not prerequisite for small RNA loading to Argonautes. The biological significance of single-stranded (ss-) RNA loading has been recognized particularly in systems where active small RNA amplification mechanisms are involved, because even a small amount of RNA molecules can trigger the production of abundant RNA species leading to profound biological effects. However, even in the absence of small RNA amplification mechanisms, recent studies have demonstrated that potent gene silencing can be achieved using chemically modified synthetic ssRNAs that are resistant to RNases in mice. Therefore, such ssRNA-mediated gene regulation may have broader roles than previously recognized, and the findings have opened the door for further research to optimize the design of ss-siRNAs toward future pharmaceutical and biomedical applications of gene silencing technologies. In this review, we will summarize studies about endogenous ssRNA species that are bound by Argonaute proteins and how ssRNA precursors are recognized by various small RNA pathways.
依赖于AGO蛋白的小RNA的一个普遍特征是它们的碱基配对前体结构,并且前体双链结构通常是可靠注释miRNA基因所必需的。然而,功能小RNA种类的发现打破了这一规则,这些小RNA的前体缺乏可预测的双链(ds-)RNA结构,这表明双链结构不是小RNA加载到AGO蛋白的先决条件。单链(ss-)RNA加载的生物学意义在涉及活性小RNA扩增机制的系统中尤为明显,因为即使少量的RNA分子也能触发大量RNA种类的产生,从而产生深远的生物学效应。然而,即使在没有小RNA扩增机制的情况下,最近的研究表明,在小鼠中使用对核糖核酸酶具有抗性的化学修饰合成ssRNA可以实现有效的基因沉默。因此,这种ssRNA介导的基因调控可能具有比以前认识到的更广泛的作用,这些发现为进一步研究优化ss-siRNA的设计以用于基因沉默技术的未来药物和生物医学应用打开了大门。在这篇综述中,我们将总结关于与AGO蛋白结合的内源性ssRNA种类以及各种小RNA途径如何识别ssRNA前体的研究。