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CCA-添加 RNA 的探索揭示了 CCA-添加酶调节的线粒体非编码 RNA 的表达。

Exploration of CCA-added RNAs revealed the expression of mitochondrial non-coding RNAs regulated by CCA-adding enzyme.

机构信息

Computational Medicine Center, Sidney Kimmel Medical College, Thomas Jefferson University, Philadelphia, PA, USA.

出版信息

RNA Biol. 2019 Dec;16(12):1817-1825. doi: 10.1080/15476286.2019.1664885. Epub 2019 Sep 12.

Abstract

Post-transcriptional non-template additions of nucleotides to 3'-ends of RNAs play important roles in the stability and function of RNA molecules. Although tRNA nucleotidyltransferase (CCA-adding enzyme) is known to add CCA trinucleotides to 3'-ends of tRNAs, whether other RNA species can be endogenous substrates of CCA-adding enzyme has not been widely explored yet. Herein, we used YAMAT-seq to identify non-tRNA substrates of CCA-adding enzyme. YAMAT-seq captures RNA species that form secondary structures with 4-nt protruding 3'-ends of the sequence 5'-NCCA-3', which is the hallmark structure of RNAs that are generated by CCA-adding enzyme. By executing YAMAT-seq for human breast cancer cells and mining the sequence data, we identified novel candidate substrates of CCA-adding enzyme. These included fourteen 'CCA-RNAs' that only contain CCA as non-genomic sequences, and eleven 'NCCA-RNAs' that contain CCA and other nucleotides as non-genomic sequences. All newly-identified (N)CCA-RNAs were derived from the mitochondrial genome and were localized in mitochondria. Knockdown of CCA-adding enzyme severely reduced the expression levels of (N)CCA-RNAs, suggesting that the CCA-adding enzyme-catalyzed CCA additions stabilize the expression of (N)CCA-RNAs. Furthermore, expression levels of (N)CCA-RNAs were severely reduced by various cellular treatments, including UV irradiation, amino acid starvation, inhibition of mitochondrial respiratory complexes, and inhibition of the cell cycle. These results revealed a novel CCA-mediated regulatory pathway for the expression of mitochondrial non-coding RNAs.

摘要

RNA 转录后 3'-末端非模板核苷酸的添加在 RNA 分子的稳定性和功能中发挥着重要作用。虽然 tRNA 核苷酸转移酶(CCA-添加酶)已知可将 CCA 三核苷酸添加到 tRNA 的 3'-末端,但其他 RNA 种类是否可作为 CCA-添加酶的内源性底物尚未得到广泛探索。在此,我们使用 YAMAT-seq 鉴定 CCA-添加酶的非 tRNA 底物。YAMAT-seq 捕获了那些与序列 5'-NCCA-3'形成二级结构的 RNA 种类,其中 3'-末端有 4 个核苷酸突出,这是由 CCA-添加酶生成的 RNA 的标志性结构。通过在人乳腺癌细胞中执行 YAMAT-seq 并挖掘序列数据,我们鉴定出了 CCA-添加酶的新候选底物。这些候选底物包括仅包含 CCA 作为非基因组序列的 14 个“CCA-RNAs”,以及包含 CCA 和其他核苷酸作为非基因组序列的 11 个“NCCA-RNAs”。所有新鉴定的(N)CCA-RNAs 均来源于线粒体基因组,定位于线粒体中。CCA-添加酶的敲低严重降低了(N)CCA-RNAs 的表达水平,表明 CCA-添加酶催化的 CCA 添加稳定了(N)CCA-RNAs 的表达。此外,包括紫外线照射、氨基酸饥饿、抑制线粒体呼吸复合物和抑制细胞周期在内的各种细胞处理都严重降低了(N)CCA-RNAs 的表达水平。这些结果揭示了一种新的 CCA 介导的线粒体非编码 RNA 表达调控途径。

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