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影响tRNA加工和tRNA甲基化的突变体中tRNA片段群体分析

tRNA Fragments Populations Analysis in Mutants Affecting tRNAs Processing and tRNA Methylation.

作者信息

Molla-Herman Anahi, Angelova Margarita T, Ginestet Maud, Carré Clément, Antoniewski Christophe, Huynh Jean-René

机构信息

Collège de France, CIRB, CNRS Inserm UMR 7241, PSL Research University, Paris, France.

Transgenerational Epigenetics & Small RNA Biology, Sorbonne Université, CNRS, Laboratoire de Biologie du Développement - Institut de Biologie Paris Seine, Paris, France.

出版信息

Front Genet. 2020 Oct 9;11:518949. doi: 10.3389/fgene.2020.518949. eCollection 2020.

Abstract

tRNA fragments (tRFs) are a class of small non-coding RNAs (sncRNAs) derived from tRNAs. tRFs are highly abundant in many cell types including stem cells and cancer cells, and are found in all domains of life. Beyond translation control, tRFs have several functions ranging from transposon silencing to cell proliferation control. However, the analysis of tRFs presents specific challenges and their biogenesis is not well understood. They are very heterogeneous and highly modified by numerous post-transcriptional modifications. Here we describe a bioinformatic pipeline (tRFs-Galaxy) to study tRFs populations and shed light onto tRNA fragments biogenesis in . Indeed, we used small RNAs Illumina sequencing datasets extracted from wild type and mutant ovaries affecting two different highly conserved steps of tRNA biogenesis: 5'pre-tRNA processing (RNase-P subunit Rpp30) and tRNA 2'-O-methylation (dTrm7_34 and dTrm7_32). Using our pipeline, we show how defects in tRNA biogenesis affect nuclear and mitochondrial tRFs populations and other small non-coding RNAs biogenesis, such as small nucleolar RNAs (snoRNAs). This tRF analysis workflow will advance the current understanding of tRFs biogenesis, which is crucial to better comprehend tRFs roles and their implication in human pathology.

摘要

转运RNA片段(tRFs)是一类源自转运RNA的小非编码RNA(sncRNAs)。tRFs在包括干细胞和癌细胞在内的许多细胞类型中高度丰富,并且在生命的所有领域中都能找到。除了翻译控制外,tRFs还具有多种功能,从转座子沉默到细胞增殖控制。然而,tRFs的分析存在特定挑战,其生物发生过程尚未得到很好的理解。它们非常异质,并且受到大量转录后修饰的高度修饰。在这里,我们描述了一种生物信息学流程(tRFs-Galaxy)来研究tRFs群体,并阐明tRNA片段在……中的生物发生。实际上,我们使用了从野生型和突变型卵巢中提取的小RNA Illumina测序数据集,这些卵巢影响了tRNA生物发生的两个不同的高度保守步骤:5'前体tRNA加工(RNase-P亚基Rpp30)和tRNA 2'-O-甲基化(dTrm7_34和dTrm7_32)。使用我们的流程,我们展示了tRNA生物发生缺陷如何影响核和线粒体tRFs群体以及其他小非编码RNA的生物发生,如小核仁RNA(snoRNAs)。这种tRF分析工作流程将推动当前对tRFs生物发生的理解,这对于更好地理解tRFs的作用及其在人类病理学中的意义至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2912/7586317/4701006a1b08/fgene-11-518949-g001.jpg

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