Institute for Biochemistry, Leipzig University, Leipzig 04103, Germany.
Institute for Biochemistry and Molecular Biology, University of Hamburg, Hamburg 20146, Germany.
RNA. 2018 Mar;24(3):361-370. doi: 10.1261/rna.064436.117. Epub 2017 Nov 27.
tRNA maturation and quality control are crucial for proper functioning of these transcripts in translation. In several organisms, defective tRNAs were shown to be tagged by poly(A) or CCACCA tails and subsequently degraded by 3'-exonucleases. In a deep-sequencing analysis of tRNA 3'-ends, we detected the CCACCA tag also in However, this tag closely resembles several 3'-trailers of tRNA precursors targeted for maturation and not for degradation. Here, we investigate the ability of two important exonucleases, RNase R and RNase T, to distinguish tRNA precursors with a native 3'-trailer from tRNAs with a CCACCA tag. Our results show that the degrading enzyme RNase R breaks down both tRNAs primed for degradation as well as precursor transcripts, indicating that it is a rather nonspecific RNase. RNase T, a main processing exonuclease involved in trimming of 3'-trailers, is very inefficient in converting the CCACCA-tagged tRNA into a mature transcript. Hence, while both RNases compete for trailer-containing tRNA precursors, the inability of RNase T to process CCACCA tails ensures that defective tRNAs cannot reenter the functional tRNA pool, representing a safeguard to avoid detrimental effects of tRNAs with erroneous integrity on protein synthesis. Furthermore, these data indicate that the RNase T-mediated end turnover of the CCA sequence represents a means to deliver a tRNA to a repeated quality control performed by the CCA-adding enzyme. Hence, originally described as a futile side reaction, the tRNA end turnover seems to fulfill an important function in the maintenance of the tRNA pool in the cell.
tRNA 的成熟和质量控制对于这些转录物在翻译中的正常功能至关重要。在几种生物体中,已显示有缺陷的 tRNA 被聚(A)或 CCACCA 尾巴标记,随后被 3'-外切核酸酶降解。在对 tRNA 3'-末端的深度测序分析中,我们还在 中检测到了 CCACCA 标签。然而,这个标签与许多针对成熟而非降解的 tRNA 前体的 3'-尾部非常相似。在这里,我们研究了两种重要的外切核酸酶,RNase R 和 RNase T,它们区分具有天然 3'-尾部的 tRNA 前体与具有 CCACCA 标签的 tRNA 的能力。我们的结果表明,降解酶 RNase R 会破坏所有准备降解的 tRNA 以及前体转录物,这表明它是一种相当非特异性的 RNase。RNase T 是一种主要的加工外切核酸酶,参与 3'-尾部的修剪,它将 CCACCA 标记的 tRNA 转化为成熟转录物的效率非常低。因此,虽然两种核酸酶都竞争含有尾部的 tRNA 前体,但 RNase T 不能处理 CCACCA 尾巴,可确保有缺陷的 tRNA 无法重新进入功能性 tRNA 池,这是一种防止具有错误完整性的 tRNA 对蛋白质合成产生有害影响的保障措施。此外,这些数据表明,RNase T 介导的 CCA 序列末端周转代表了一种将 tRNA 递送至由 CCA 添加酶重复进行的质量控制的手段。因此,最初被描述为一种无效的副反应,tRNA 末端周转似乎在维持细胞中 tRNA 池方面发挥了重要作用。