Comprehensive genomic analysis reveals dynamic evolution of endogenous retroviruses that code for retroviral-like protein domains.

IF 4.7 2区 生物学 Q1 GENETICS & HEREDITY
Mobile DNA Pub Date : 2020-09-17 eCollection Date: 2020-01-01 DOI:10.1186/s13100-020-00224-w
Mahoko Takahashi Ueda, Kirill Kryukov, Satomi Mitsuhashi, Hiroaki Mitsuhashi, Tadashi Imanishi, So Nakagawa
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引用次数: 14

Abstract

Background: Endogenous retroviruses (ERVs) are remnants of ancient retroviral infections of mammalian germline cells. A large proportion of ERVs lose their open reading frames (ORFs), while others retain them and become exapted by the host species. However, it remains unclear what proportion of ERVs possess ORFs (ERV-ORFs), become transcribed, and serve as candidates for co-opted genes.

Results: We investigated characteristics of 176,401 ERV-ORFs containing retroviral-like protein domains (gag, pro, pol, and env) in 19 mammalian genomes. The fractions of ERVs possessing ORFs were overall small (~ 0.15%) although they varied depending on domain types as well as species. The observed divergence of ERV-ORF from their consensus sequences showed bimodal distributions, suggesting that a large proportion of ERV-ORFs either recently, or anciently, inserted themselves into mammalian genomes. Alternatively, very few ERVs lacking ORFs were found to exhibit similar divergence patterns. To identify candidates for ERV-derived genes, we estimated the ratio of non-synonymous to synonymous substitution rates (dN/dS) for ERV-ORFs in human and non-human mammalian pairs, and found that approximately 42% of the ERV-ORFs showed dN/dS < 1. Further, using functional genomics data including transcriptome sequencing, we determined that approximately 9.7% of these selected ERV-ORFs exhibited transcriptional potential.

Conclusions: These results suggest that purifying selection operates on a certain portion of ERV-ORFs, some of which may correspond to uncharacterized functional genes hidden within mammalian genomes. Together, our analyses suggest that more ERV-ORFs may be co-opted in a host-species specific manner than we currently know, which are likely to have contributed to mammalian evolution and diversification.

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全面的基因组分析揭示了内源性逆转录病毒编码逆转录病毒样蛋白结构域的动态进化。
背景:内源性逆转录病毒(ERVs)是哺乳动物生殖系细胞古代逆转录病毒感染的残余。大部分erv失去了它们的开放阅读框(orf),而其他erv保留了它们并被宿主物种所期待。然而,目前尚不清楚有多少比例的erv拥有orf (erv - orf),被转录,并作为增选基因的候选者。结果:我们研究了19种哺乳动物基因组中含有逆转录病毒样蛋白结构域(gag、pro、pol和env)的176,401个erv - orf的特征。具有orf的erv的比例总体上很小(约0.15%),尽管它们因结构域类型和物种而有所不同。观察到的ERV-ORF与一致序列的差异表现为双峰分布,这表明大部分ERV-ORF要么是最近的,要么是古代的,插入到哺乳动物基因组中。另外,很少有缺乏orf的erv被发现表现出类似的发散模式。为了确定erv衍生基因的候选基因,我们估计了人类和非人类哺乳动物对erv - orf的非同义与同义替代率(dN/dS)的比率,发现大约42%的erv - orf显示dN/dS。结论:这些结果表明纯化选择作用于一定部分的erv - orf,其中一些可能对应于隐藏在哺乳动物基因组中的未表征的功能基因。总之,我们的分析表明,可能有比我们目前所知的更多的erv - orf以特定于宿主物种的方式被增选,这可能有助于哺乳动物的进化和多样化。
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来源期刊
Mobile DNA
Mobile DNA GENETICS & HEREDITY-
CiteScore
8.20
自引率
6.10%
发文量
26
审稿时长
11 weeks
期刊介绍: Mobile DNA is an online, peer-reviewed, open access journal that publishes articles providing novel insights into DNA rearrangements in all organisms, ranging from transposition and other types of recombination mechanisms to patterns and processes of mobile element and host genome evolution. In addition, the journal will consider articles on the utility of mobile genetic elements in biotechnological methods and protocols.
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