核衣壳R203K/G204R变异产生新的SARS-CoV-2亚基因组RNA:同源重组有可能在蛋白质和RNA水平上改变SARS-CoV-2

Q1 Medicine
Pathogens and Immunity Pub Date : 2021-08-20 eCollection Date: 2021-01-01 DOI:10.20411/pai.v6i2.460
Shay Leary, Silvana Gaudieri, Matthew D Parker, Abha Chopra, Ian James, Suman Pakala, Eric Alves, Mina John, Benjamin B Lindsey, Alexander J Keeley, Sarah L Rowland-Jones, Maurice S Swanson, David A Ostrov, Jodi L Bubenik, Suman R Das, John Sidney, Alessandro Sette, Thushan I de Silva, Elizabeth Phillips, Simon Mallal
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引用次数: 33

摘要

背景:严重急性呼吸系统综合征冠状病毒2型基因组的遗传变异可能会影响病毒的传播性和宿主的抗病毒免疫反应,进而随着时间的推移影响变异的频率。在这项研究中,我们检测了在刺突D614G变化背景下出现的严重急性呼吸系统综合征冠状病毒2型核衣壳(R203K/G204R)中的相邻氨基酸多态性,并描述了携带这些变化的菌株如何成为全球主要循环菌株。方法:分析来自公共数据库和临床样本的严重急性呼吸系统综合征冠状病毒2型的深度测序数据,以识别和绘制整个基因组的遗传变异和亚基因组RNA转录本。结果:序列分析表明,导致K203/R204变体的3个相邻核苷酸变化是由前导转录调节序列(TRS)核心序列的同源重组引起的,而不是由逐步突变引起的。由此产生的序列变化为核衣壳的C末端二聚化结构域产生了一种新的亚基因组RNA转录物。来自981个临床样本的深度测序数据证实了在具有K203/R204变体的个体中存在新的TRS CS二聚化结构域RNA。亚基因组RNA的定量表明,具有K203/R204变体的病毒也可能具有来自其他开放阅读框架的亚基因组RNA表达增加。结论:自严重急性呼吸系统综合征冠状病毒2型在人类中引入以来,TRS的同源重组可能已经发生,导致编码变化和新的亚基因组RNA转录物,这表明这是其新宿主内多样化和适应的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Generation of a Novel SARS-CoV-2 Sub-genomic RNA Due to the R203K/G204R Variant in Nucleocapsid: Homologous Recombination has Potential to Change SARS-CoV-2 at Both Protein and RNA Level.

Generation of a Novel SARS-CoV-2 Sub-genomic RNA Due to the R203K/G204R Variant in Nucleocapsid: Homologous Recombination has Potential to Change SARS-CoV-2 at Both Protein and RNA Level.

Generation of a Novel SARS-CoV-2 Sub-genomic RNA Due to the R203K/G204R Variant in Nucleocapsid: Homologous Recombination has Potential to Change SARS-CoV-2 at Both Protein and RNA Level.

Generation of a Novel SARS-CoV-2 Sub-genomic RNA Due to the R203K/G204R Variant in Nucleocapsid: Homologous Recombination has Potential to Change SARS-CoV-2 at Both Protein and RNA Level.

Background: Genetic variations across the SARS-CoV-2 genome may influence transmissibility of the virus and the host's anti-viral immune response, in turn affecting the frequency of variants over time. In this study, we examined the adjacent amino acid polymorphisms in the nucleocapsid (R203K/G204R) of SARS-CoV-2 that arose on the background of the spike D614G change and describe how strains harboring these changes became dominant circulating strains globally.

Methods: Deep-sequencing data of SARS-CoV-2 from public databases and from clinical samples were analyzed to identify and map genetic variants and sub-genomic RNA transcripts across the genome. Results: Sequence analysis suggests that the 3 adjacent nucleotide changes that result in the K203/R204 variant have arisen by homologous recombination from the core sequence of the leader transcription-regulating sequence (TRS) rather than by stepwise mutation. The resulting sequence changes generate a novel sub-genomic RNA transcript for the C-terminal dimerization domain of nucleocapsid. Deep-sequencing data from 981 clinical samples confirmed the presence of the novel TRS-CS-dimerization domain RNA in individuals with the K203/R204 variant. Quantification of sub-genomic RNA indicates that viruses with the K203/R204 variant may also have increased expression of sub-genomic RNA from other open reading frames.

Conclusions: The finding that homologous recombination from the TRS may have occurred since the introduction of SARS-CoV-2 in humans, resulting in both coding changes and novel sub-genomic RNA transcripts, suggests this as a mechanism for diversification and adaptation within its new host.

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来源期刊
Pathogens and Immunity
Pathogens and Immunity Medicine-Infectious Diseases
CiteScore
10.60
自引率
0.00%
发文量
16
审稿时长
10 weeks
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