Department of Microbiology and Immunology, School of Medicine and Biomedical Sciences, University at Buffalo, State University of New York, Buffalo, New York, United States of America.
PLoS One. 2012;7(5):e37639. doi: 10.1371/journal.pone.0037639. Epub 2012 May 21.
Short, non-encoded oligo(A), oligo(U), or A/U tails can impact mRNA stability in kinetoplastid mitochondria. However, a comprehensive picture of the relative effects of these modifications in RNA stability is lacking. Furthermore, while the U-preferring exoribonuclease TbRND acts on U-tailed gRNAs, its role in decay of uridylated mRNAs has only been cursorily investigated. Here, we analyzed the roles of mRNA 3' tail composition and TbRND in RNA decay using cells harbouring single or double knockdown of TbRND and the KPAP1 poly(A) polymerase. Analysis of mRNA abundance and tail composition reveals dramatic and transcript-specific effects of adenylation and uridylation on mitochondrial RNAs. Oligo(A) and A-rich tails can stabilize a proportion of edited and never-edited RNAs. However, non-tailed RNAs are not inherently unstable, implicating additional stability determinants and/or spatial segregation of sub-populations of a given RNA in regulation of RNA decay. Oligo(U) tails, which have been shown to contribute to decay of some never-edited RNAs, are not universally destabilizing. We also show that RNAs display very different susceptibility to uridylation in the absence of KPAP1, a factor that may contribute to regulation of decay. Finally, 3' tail composition apparently impacts the ability of an RNA to be edited.
短的、非编码的寡 A、寡 U 或 A/U 尾巴可以影响动基体线粒体中 mRNA 的稳定性。然而,这些修饰对 RNA 稳定性的相对影响的全貌尚不清楚。此外,虽然偏爱 U 的外切核糖核酸酶 TbRND 作用于 U 尾 gRNAs,但它在尿苷酸化 mRNA 降解中的作用仅被粗略研究过。在这里,我们使用 TbRND 和 KPAP1 多聚(A)聚合酶单或双敲低的细胞分析了 mRNA 3' 尾巴组成和 TbRND 在 RNA 降解中的作用。对 mRNA 丰度和尾巴组成的分析揭示了腺苷酸化和尿苷酸化对线粒体 RNA 的显著且转录特异性影响。寡 A 和富含 A 的尾巴可以稳定一部分编辑和从未编辑的 RNA。然而,无尾 RNA 本身并不不稳定,这暗示了其他稳定性决定因素和/或给定 RNA 亚群的空间分离在 RNA 降解的调控中起作用。寡 U 尾巴已被证明有助于一些从未编辑的 RNA 的降解,但并不是普遍的不稳定因素。我们还表明,在没有 KPAP1 的情况下,RNA 对尿苷酸化的敏感性非常不同,这一因素可能有助于调控降解。最后,3' 尾巴组成显然会影响 RNA 的编辑能力。