Shigematsu Megumi, Kirino Yohei
Computational Medicine Center, Sidney Kimmel Medical College, Thomas Jefferson University, Philadelphia, PA, USA.
Gene Regul Syst Bio. 2015 Sep 10;9:27-33. doi: 10.4137/GRSB.S29411. eCollection 2015.
The advent of next-generation sequencing technologies has not only accelerated findings on various novel non-coding RNA (ncRNA) species but also led to the revision of the biological significance and versatility of fundamental RNA species with canonical function, such as transfer RNAs (tRNAs). Although tRNAs are best known as adapter components of translational machinery, recent studies suggest that tRNAs are not always end products but can further serve as a source for short ncRNAs. In many organisms, various tRNA-derived ncRNA species are produced from mature tRNAs or their precursor transcripts as functional molecules involved in various biological processes beyond translation. In this review, we focus on the tRNA-derived ncRNAs associated with Argonaute proteins and summarize recent studies on their conceivable biogenesis factors and on their emerging roles in gene expression regulation as regulatory RNAs.
下一代测序技术的出现不仅加速了对各种新型非编码RNA(ncRNA)种类的发现,还导致了对具有经典功能的基本RNA种类(如转运RNA(tRNA))的生物学意义和多功能性的重新认识。尽管tRNA最为人所知的是作为翻译机制的衔接组件,但最近的研究表明,tRNA并不总是最终产物,而是可以进一步作为短ncRNA的来源。在许多生物体中,各种tRNA衍生的ncRNA种类是从成熟tRNA或其前体转录本产生的,作为参与翻译以外各种生物过程的功能分子。在这篇综述中,我们重点关注与AGO蛋白相关的tRNA衍生ncRNA,并总结了关于其可能的生物发生因子以及它们作为调控RNA在基因表达调控中新兴作用的最新研究。