探索传染性非编码环状RNA的RNA修饰。

IF 3.6 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
RNA Biology Pub Date : 2025-12-01 Epub Date: 2025-02-11 DOI:10.1080/15476286.2025.2459039
Pavel Vopalensky, Anton Škríba, Michela Chiumenti, Lucia Ďuričeková, Anna Šimonová, Ondřej Lukšan, Francesco Di Serio, Beatriz Navarro, Hana Cahova
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引用次数: 0

摘要

类病毒是一种小的环状非编码RNA,在高等植物中作为感染性病原体,尽管仅由裸RNA组成,但具有很高的稳定性。它们的复制依赖于宿主机制,这就提出了RNA修饰是否在类病毒生物学中起作用的问题。在这里,我们利用LC - MS和Oxford Nanopore Technology (ONT)直接RNA测序技术,分别研究了鳄梨太阳斑病毒(ASBVd)和柑橘外皮病毒(CEVd)的RNA修饰,它们分别是在叶绿体和细胞核中复制的类病毒的代表成员。虽然在ASBVd中没有检测到修饰,但CEVd每个RNA分子大约含有一个m6A。ONT测序预测了3个m6A位点。采用正交SELECT方法,我们确定了m6A在CEVd变体中高度保守的两个位点A353和A360。这些位置位于CEVd棒状结构的左端区域,可能是RNA Pol II和tfiia - 7zf结合的地方,因此表明甲基化在类病毒复制中的潜在生物学作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring RNA modifications in infectious non-coding circular RNAs.

Viroids, small circular non-coding RNAs, act as infectious pathogens in higher plants, demonstrating high stability despite consisting solely of naked RNA. Their dependence of replication on host machinery poses the question of whether RNA modifications play a role in viroid biology. Here, we explore RNA modifications in the avocado sunblotch viroid (ASBVd) and the citrus exocortis viroid (CEVd), representative members of viroids replicating in chloroplasts and the nucleus, respectively, using LC - MS and Oxford Nanopore Technology (ONT) direct RNA sequencing. Although no modification was detected in ASBVd, CEVd contained approximately one m6A per RNA molecule. ONT sequencing predicted three m6A positions. Employing orthogonal SELECT method, we confirmed m6A in two positions A353 and A360, which are highly conserved among CEVd variants. These positions are located in the left terminal region of the CEVd rod-like structure where likely RNA Pol II and and TFIIIA-7ZF bind, thus suggesting potential biological role of methylation in viroid replication.

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来源期刊
RNA Biology
RNA Biology 生物-生化与分子生物学
CiteScore
8.60
自引率
0.00%
发文量
82
审稿时长
1 months
期刊介绍: RNA has played a central role in all cellular processes since the beginning of life: decoding the genome, regulating gene expression, mediating molecular interactions, catalyzing chemical reactions. RNA Biology, as a leading journal in the field, provides a platform for presenting and discussing cutting-edge RNA research. RNA Biology brings together a multidisciplinary community of scientists working in the areas of: Transcription and splicing Post-transcriptional regulation of gene expression Non-coding RNAs RNA localization Translation and catalysis by RNA Structural biology Bioinformatics RNA in disease and therapy
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