Read David F, Waller Thomas J, Tse Eric, Southworth Daniel R, Engelke David R, Smaldino Philip J
Biological Chemistry, University of Michigan, Ann Arbor, MI, USA.
Life Sciences Institute, University of Michigan, Ann Arbor, MI, USA.
FEBS Lett. 2017 Jun;591(11):1601-1610. doi: 10.1002/1873-3468.12627. Epub 2017 May 22.
Mod5 is a multifunctional protein that modifies a subset of tRNAs in the cytoplasm and is also required for an RNA-mediated form of transcriptional silencing. Previous in vivo studies have shown that the nuclear silencing function of Mod5 does not require that the causative tRNA gene encode a Mod5 substrate, although Mod5 is still required. However, previous data have not directly tested whether Mod5 can directly bind substrate and nonsubstrate RNAs. We herein demonstrate that Mod5 directly binds to both substrate and nonsubstrate RNAs, including a highly structured, non-tRNA sequence (5S-rRNA), consistent with previous in vivo data. Furthermore, we show that some RNAs drastically change the aggregation behavior of Mod5 with implications for tRNA gene-mediated silencing.
Mod5是一种多功能蛋白质,它修饰细胞质中一部分tRNA,并且在一种RNA介导的转录沉默形式中也是必需的。先前的体内研究表明,Mod5的核沉默功能并不要求致病tRNA基因编码Mod5底物,尽管仍然需要Mod5。然而,先前的数据尚未直接测试Mod5是否能直接结合底物RNA和非底物RNA。我们在此证明,Mod5直接结合底物RNA和非底物RNA,包括一个高度结构化的非tRNA序列(5S-rRNA),这与先前的体内数据一致。此外,我们表明一些RNA会极大地改变Mod5的聚集行为,这对tRNA基因介导的沉默有影响。