Honda Shozo, Kawamura Takuya, Loher Phillipe, Morichika Keisuke, Rigoutsos Isidore, Kirino Yohei
Computational Medicine Center, Sidney Kimmel Medical College, Thomas Jefferson University, Philadelphia, PA 19107, USA.
Nucleic Acids Res. 2017 Sep 6;45(15):9108-9120. doi: 10.1093/nar/gkx537.
Transfer RNAs (tRNAs) function in translational machinery and further serves as a source of short non-coding RNAs (ncRNAs). tRNA-derived ncRNAs show differential expression profiles and play roles in many biological processes beyond translation. Molecular mechanisms that shape and regulate their expression profiles are largely unknown. Here, we report the mechanism of biogenesis for tRNA-derived Piwi-interacting RNAs (td-piRNAs) expressed in Bombyx BmN4 cells. In the cells, two cytoplasmic tRNA species, tRNAAspGUC and tRNAHisGUG, served as major sources for td-piRNAs, which were derived from the 5'-part of the respective tRNAs. cP-RNA-seq identified the two tRNAs as major substrates for the 5'-tRNA halves as well, suggesting a previously uncharacterized link between 5'-tRNA halves and td-piRNAs. An increase in levels of the 5'-tRNA halves, induced by BmNSun2 knockdown, enhanced the td-piRNA expression levels without quantitative change in mature tRNAs, indicating that 5'-tRNA halves, not mature tRNAs, are the direct precursors for td-piRNAs. For the generation of tRNAHisGUG-derived piRNAs, BmThg1l-mediated nucleotide addition to -1 position of tRNAHisGUG was required, revealing an important function of BmThg1l in piRNA biogenesis. Our study advances the understanding of biogenesis mechanisms and the genesis of specific expression profiles for tRNA-derived ncRNAs.
转运RNA(tRNA)在翻译机制中发挥作用,并进一步作为短非编码RNA(ncRNA)的来源。tRNA衍生的ncRNA表现出差异表达谱,并在翻译以外的许多生物学过程中发挥作用。塑造和调节其表达谱的分子机制在很大程度上尚不清楚。在这里,我们报告了在家蚕BmN4细胞中表达的tRNA衍生的Piwi相互作用RNA(td-piRNA)的生物发生机制。在这些细胞中,两种细胞质tRNA,即天冬氨酸tRNA(tRNAAspGUC)和组氨酸tRNA(tRNAHisGUG),是td-piRNA的主要来源,它们分别来自各自tRNA的5'部分。cP-RNA测序也将这两种tRNA鉴定为5'-tRNA半体的主要底物,这表明5'-tRNA半体与td-piRNA之间存在以前未被表征的联系。由BmNSun2敲低诱导的5'-tRNA半体水平增加,在成熟tRNA没有定量变化的情况下提高了td-piRNA的表达水平,表明5'-tRNA半体而非成熟tRNA是td-piRNA的直接前体。对于生成源自tRNAHisGUG的piRNA,需要BmThg1l介导的核苷酸添加到tRNAHisGUG的-1位置,这揭示了BmThg1l在piRNA生物发生中的重要功能。我们的研究推进了对生物发生机制以及tRNA衍生的ncRNA特定表达谱起源的理解。