Comparative analysis and classification of highly divergent mouse rDNA units based on their intergenic spacer (IGS) variability.

IF 4 Q1 GENETICS & HEREDITY
NAR Genomics and Bioinformatics Pub Date : 2024-06-14 eCollection Date: 2024-06-01 DOI:10.1093/nargab/lqae070
Jung-Hyun Kim, Ramaiah Nagaraja, Alexey Y Ogurtsov, Vladimir N Noskov, Mikhail Liskovykh, Hee-Sheung Lee, Yutaro Hori, Takehiko Kobayashi, Kent Hunter, David Schlessinger, Natalay Kouprina, Svetlana A Shabalina, Vladimir Larionov
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Abstract

Ribosomal DNA (rDNA) repeat units are organized into tandem clusters in eukaryotic cells. In mice, these clusters are located on at least eight chromosomes and show extensive variation in the number of repeats between mouse genomes. To analyze intra- and inter-genomic variation of mouse rDNA repeats, we selectively isolated 25 individual rDNA units using Transformation-Associated Recombination (TAR) cloning. Long-read sequencing and subsequent comparative sequence analysis revealed that each full-length unit comprises an intergenic spacer (IGS) and a ∼13.4 kb long transcribed region encoding the three rRNAs, but with substantial variability in rDNA unit size, ranging from ∼35 to ∼46 kb. Within the transcribed regions of rDNA units, we found 209 variants, 70 of which are in external transcribed spacers (ETSs); but the rDNA size differences are driven primarily by IGS size heterogeneity, due to indels containing repetitive elements and some functional signals such as enhancers. Further evolutionary analysis categorized rDNA units into distinct clusters with characteristic IGS lengths; numbers of enhancers; and presence/absence of two common SNPs in promoter regions, one of which is located within promoter (p)RNA and may influence pRNA folding stability. These characteristic features of IGSs also correlated significantly with 5'ETS variant patterns described previously and associated with differential expression of rDNA units. Our results suggest that variant rDNA units are differentially regulated and open a route to investigate the role of rDNA variation on nucleolar formation and possible associations with pathology.

基于基因间间隔(IGS)变异性对高度分化的小鼠 rDNA 单元进行比较分析和分类。
核糖体 DNA(rDNA)重复单位在真核细胞中组成串联簇。在小鼠体内,这些簇至少位于八条染色体上,而且不同小鼠基因组之间的重复序列数量差异很大。为了分析小鼠 rDNA 重复序列在基因组内和基因组间的变化,我们利用转化相关重组(TAR)克隆技术选择性地分离了 25 个独立的 rDNA 单元。长读测序和随后的序列比较分析表明,每个全长单元包括一个基因间间隔(IGS)和一个长达 13.4 kb 的转录区,编码三种 rRNA,但 rDNA 单元大小差异很大,从 35 kb 到 46 kb 不等。在 rDNA 单元的转录区域内,我们发现了 209 个变体,其中 70 个位于外部转录间隔区(ETS);但 rDNA 大小差异主要是由 IGS 大小异质性引起的,这是由于含有重复元件和一些功能信号(如增强子)的嵌合体造成的。进一步的进化分析将 rDNA 单位分为不同的群组,这些群组具有特征性的 IGS 长度、增强子数量以及启动子区域中两个常见 SNP 的存在/不存在,其中一个 SNP 位于启动子(p)RNA 内,可能会影响 pRNA 折叠的稳定性。IGSs的这些特征还与之前描述的5'ETS变异模式显著相关,并与rDNA单元的差异表达有关。我们的研究结果表明,变异的 rDNA 单元受到不同的调控,这为研究 rDNA 变异对核极形成的作用以及可能与病理学的关联开辟了一条途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
8.00
自引率
2.20%
发文量
95
审稿时长
15 weeks
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