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亲代 tRNA 修饰状态决定呼吸道合胞病毒感染诱导功能性 tRNA 衍生 RNA 的产生。

Parent tRNA Modification Status Determines the Induction of Functional tRNA-Derived RNA by Respiratory Syncytial Virus Infection.

机构信息

Department of Pediatrics, University of Texas Medical Branch, Galveston, TX 77555, USA.

Department of Biological and Chemical Science, New York Institute of Technology, New York, NY 10023, USA.

出版信息

Viruses. 2022 Dec 24;15(1):57. doi: 10.3390/v15010057.

Abstract

tRNA-derived RNA fragments (tRFs) are a recently discovered family of small noncoding RNAs (sncRNAs). We previously reported that respiratory syncytial virus (RSV) infection induces functional tRFs, which are derived from a limited subset of parent tRNAs, in airway epithelial cells. Such induction is also observed in nasopharyngeal wash samples from RSV patients and correlates to RSV genome copies, suggesting a clinical significance of tRFs in RSV infection. This work also investigates whether the modification of parent tRNAs is changed by RSV to induce tRFs, using one of the most inducible tRFs as a model. We discovered that RSV infection changed the methylation modification of adenine at position 57 in tRNA glutamic acid, with a codon of CTC (tRNA-GluCTC), and the change is essential for its cleavage. AlkB homolog 1, a previously reported tRNA demethylase, appears to remove methyladenine from tRNA-GluCTC, prompting the subsequent production of tRFs from the 5'-end of tRNA-GluCTC, a regulator of RSV replication. This study demonstrates for the first time the importance of post-transcriptional modification of tRNAs in tRF biogenesis following RSV infection, providing critical insights for antiviral strategy development.

摘要

tRNA 衍生的 RNA 片段(tRFs)是最近发现的一类小非编码 RNA(sncRNA)。我们之前报道过,呼吸道合胞病毒(RSV)感染可诱导气道上皮细胞中产生功能性 tRFs,这些 tRFs 来自有限的一组亲本 tRNA。在 RSV 患者的鼻咽洗液样本中也观察到这种诱导作用,且与 RSV 基因组拷贝数相关,提示 tRFs 在 RSV 感染中的临床意义。这项工作还研究了 RSV 是否通过改变亲本 tRNA 的修饰来诱导 tRFs,使用最具诱导性的 tRF 之一作为模型。我们发现 RSV 感染改变了 tRNA 谷氨酸 57 位腺嘌呤的甲基化修饰,其密码子为 CTC(tRNA-GluCTC),这种改变对于其切割至关重要。先前报道的 tRNA 去甲基酶 AlkB 同源物 1 似乎从 tRNA-GluCTC 中去除了甲基腺嘌呤,促使 tRNA-GluCTC 的 5'端产生 tRFs,后者是 RSV 复制的调节剂。这项研究首次证明了 RSV 感染后 tRNA 转录后修饰在 tRF 生物发生中的重要性,为抗病毒策略的发展提供了关键见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe82/9860972/9af94c9b4203/viruses-15-00057-g001.jpg

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