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鉴定新型、功能性长链非编码 RNA 参与程序性、大规模基因组重排。

Identification of novel, functional, long noncoding RNAs involved in programmed, large-scale genome rearrangements.

机构信息

Institute of Cell Biology, University of Bern, Bern 3012, Switzerland.

Graduate School for Cellular and Biomedical Sciences, University of Bern, Bern 3012, Switzerland.

出版信息

RNA. 2022 Aug;28(8):1110-1127. doi: 10.1261/rna.079134.122. Epub 2022 Jun 9.

Abstract

Noncoding RNAs (ncRNAs) make up to ∼98% percent of the transcriptome of a given organism. In recent years, one relatively new class of ncRNAs, long noncoding RNAs (lncRNAs), were shown to be more than mere by-products of gene expression and regulation. The unicellular eukaryote is a member of the ciliate phylum, an extremely heterogeneous group of organisms found in most bodies of water across the globe. A hallmark of ciliate genetics is nuclear dimorphism and programmed elimination of transposons and transposon-derived DNA elements, the latter of which is essential for the maintenance of the somatic genome. and ciliates in general harbor a plethora of different ncRNA species, some of which drive the process of large-scale genome rearrangements, including DNA elimination, during sexual development. Here, we identify and validate the first known functional lncRNAs in ciliates to date. Using deep-sequencing and subsequent bioinformatic processing and experimental validation, we show that expresses at least 15 lncRNAs. These candidates were predicted by a highly conservative pipeline, and informatic analyses hint at differential expression during development. Depletion of two lncRNAs, lnc1 and lnc15, resulted in clear phenotypes, decreased survival, morphological impairment, and a global effect on DNA elimination.

摘要

非编码 RNA(ncRNAs)构成了特定生物体转录组的 98%。近年来,一类相对较新的 ncRNA,长非编码 RNA(lncRNAs),不仅是基因表达和调控的副产物。单细胞真核生物 是纤毛门的成员,纤毛门是全球大多数水体中发现的一组极其多样的生物体。纤毛遗传的一个特点是核二态性和转座子和转座子衍生的 DNA 元件的程序性消除,后者对于维持体细胞基因组是必不可少的。 和纤毛通常含有大量不同的 ncRNA 物种,其中一些驱动大规模基因组重排的过程,包括有性发育过程中的 DNA 消除。在这里,我们确定并验证了迄今为止纤毛中第一个已知的功能性 lncRNA。我们使用深度测序和随后的生物信息学处理和实验验证,表明 至少表达 15 种 lncRNAs。这些候选者是通过高度保守的管道预测的,并且信息学分析提示在发育过程中存在差异表达。两种 lncRNA,lnc1 和 lnc15 的耗尽导致了明显的表型,存活率降低,形态损伤,以及对 DNA 消除的整体影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41df/9297840/0f72975e86f5/1110f01.jpg

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