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人类核糖体 RNA 基因的广泛遗传异质性。

Widespread genetic heterogeneity of human ribosomal RNA genes.

机构信息

Department of Radiation Oncology and Molecular Radiation Sciences, and Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine, Baltimore, Maryland 21287, USA.

Department of Computer Science, Whiting School of Engineering, Johns Hopkins University, Baltimore, Maryland 21287, USA.

出版信息

RNA. 2022 Apr;28(4):478-492. doi: 10.1261/rna.078925.121. Epub 2022 Feb 2.

Abstract

Polymorphism drives survival under stress and provides adaptability. Genetic polymorphism of ribosomal RNA (rRNA) genes derives from internal repeat variation of this multicopy gene, and from interindividual variation. A considerable amount of rRNA sequence heterogeneity has been proposed but has been challenging to estimate given the scarcity of accurate reference sequences. We identified four rDNA copies on chromosome 21 (GRCh38) with 99% similarity to recently introduced reference sequence KY962518.1. We customized a GATK bioinformatics pipeline using the four rDNA loci, spanning a total 145 kb, for variant calling and used high-coverage whole-genome sequencing (WGS) data from the 1000 Genomes Project to analyze variants in 2504 individuals from 26 populations. We identified a total of 3791 variant positions. The variants positioned nonrandomly on the rRNA gene. Invariant regions included the promoter, early 5' ETS, most of 18S, 5.8S, ITS1, and large areas of the intragenic spacer. A total of 470 variant positions were observed on 28S rRNA. The majority of the 28S rRNA variants were located on highly flexible human-expanded rRNA helical folds ES7L and ES27L, suggesting that these represent positions of diversity and are potentially under continuous evolution. Several variants were validated based on RNA-seq analyses. Population analyses showed remarkable ancestry-linked genetic variance and the presence of both high penetrance and frequent variants in the 5' ETS, ITS2, and 28S regions segregating according to the continental populations. These findings provide a genetic view of rRNA gene array heterogeneity and raise the need to functionally assess how the 28S rRNA variants affect ribosome functions.

摘要

多态性可促进生物在压力下的生存并提供适应性。核糖体 RNA(rRNA)基因的遗传多态性源于该多拷贝基因的内部重复变异和个体间的变异。已经提出了相当数量的 rRNA 序列异质性,但由于准确参考序列的稀缺,很难进行估计。我们在染色体 21(GRCh38)上鉴定了 4 个与最近引入的参考序列 KY962518.1 具有 99%相似性的 rDNA 拷贝。我们使用跨越总长 145 kb 的 4 个 rDNA 位点定制了 GATK 生物信息学管道,用于变体调用,并使用来自 1000 基因组计划的高覆盖率全基因组测序(WGS)数据来分析来自 26 个群体的 2504 个人的变体。我们总共鉴定了 3791 个变体位置。这些变体在 rRNA 基因上的位置是非随机的。不变区域包括启动子、早期 5'ETS、18S 的大部分、5.8S、ITS1 和基因内间隔区的大部分。在 28S rRNA 上共观察到 470 个变体位置。28S rRNA 变体的大部分位于高度灵活的人类扩展 rRNA 螺旋折叠 ES7L 和 ES27L 上,这表明这些位置存在多样性,并且可能处于不断进化之中。基于 RNA-seq 分析验证了一些变体。群体分析显示,在 5'ETS、ITS2 和 28S 区域存在显著的与祖先相关的遗传方差,并且存在高外显率和高频变体,这些变体根据大陆群体进行分离。这些发现为 rRNA 基因阵列异质性提供了遗传视角,并提出了需要功能评估 28S rRNA 变体如何影响核糖体功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2dc/8925967/d15ec91cbc37/478f01.jpg

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