Cargando…
A Noncoding A-to-U Kozak Site Change Related to the High Transmissibility of Alpha, Delta, and Omicron VOCs
Three prevalent SARS-CoV-2 variants of concern (VOCs) emerged and caused epidemic waves. It is essential to uncover advantageous mutations that cause the high transmissibility of VOCs. However, viral mutations are tightly linked, so traditional population genetic methods, including machine learning–...
Autores principales: | , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10287536/ https://www.ncbi.nlm.nih.gov/pubmed/37341536 http://dx.doi.org/10.1093/molbev/msad142 |
_version_ | 1785061895814774784 |
---|---|
author | Yang, Jianing Cui, Yingmin Yu, Dalang Zhang, Guoqing Cao, Ruifang Gu, Zhili Dai, Guangyi Wu, Xiaoxian Ling, Yunchao Yi, Chunyan Sun, Xiaoyu Sun, Bing Lin, Xin Zhang, Yu Zhao, Guo-Ping Li, Yixue Pan, Yi-Hsuan Li, Haipeng |
author_facet | Yang, Jianing Cui, Yingmin Yu, Dalang Zhang, Guoqing Cao, Ruifang Gu, Zhili Dai, Guangyi Wu, Xiaoxian Ling, Yunchao Yi, Chunyan Sun, Xiaoyu Sun, Bing Lin, Xin Zhang, Yu Zhao, Guo-Ping Li, Yixue Pan, Yi-Hsuan Li, Haipeng |
author_sort | Yang, Jianing |
collection | PubMed |
description | Three prevalent SARS-CoV-2 variants of concern (VOCs) emerged and caused epidemic waves. It is essential to uncover advantageous mutations that cause the high transmissibility of VOCs. However, viral mutations are tightly linked, so traditional population genetic methods, including machine learning–based methods, cannot reliably detect mutations conferring a fitness advantage. In this study, we developed an approach based on the sequential occurrence order of mutations and the accelerated furcation rate in the pandemic-scale phylogenomic tree. We analyzed 3,777,753 high-quality SARS-CoV-2 genomic sequences and the epidemiology metadata using the Coronavirus GenBrowser. We found that two noncoding mutations at the same position (g.a28271−/u) may be crucial to the high transmissibility of Alpha, Delta, and Omicron VOCs although the noncoding mutations alone cannot increase viral transmissibility. Both mutations cause an A-to-U change at the core position −3 of the Kozak sequence of the N gene and significantly reduce the protein expression ratio of ORF9b to N. Using a convergent evolutionary analysis, we found that g.a28271−/u, S:p.P681H/R, and N:p.R203K/M occur independently on three VOC lineages, suggesting that coordinated changes of S, N, and ORF9b proteins are crucial to high viral transmissibility. Our results provide new insights into high viral transmissibility co-modulated by advantageous noncoding and nonsynonymous changes. |
format | Online Article Text |
id | pubmed-10287536 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-102875362023-06-23 A Noncoding A-to-U Kozak Site Change Related to the High Transmissibility of Alpha, Delta, and Omicron VOCs Yang, Jianing Cui, Yingmin Yu, Dalang Zhang, Guoqing Cao, Ruifang Gu, Zhili Dai, Guangyi Wu, Xiaoxian Ling, Yunchao Yi, Chunyan Sun, Xiaoyu Sun, Bing Lin, Xin Zhang, Yu Zhao, Guo-Ping Li, Yixue Pan, Yi-Hsuan Li, Haipeng Mol Biol Evol Discoveries Three prevalent SARS-CoV-2 variants of concern (VOCs) emerged and caused epidemic waves. It is essential to uncover advantageous mutations that cause the high transmissibility of VOCs. However, viral mutations are tightly linked, so traditional population genetic methods, including machine learning–based methods, cannot reliably detect mutations conferring a fitness advantage. In this study, we developed an approach based on the sequential occurrence order of mutations and the accelerated furcation rate in the pandemic-scale phylogenomic tree. We analyzed 3,777,753 high-quality SARS-CoV-2 genomic sequences and the epidemiology metadata using the Coronavirus GenBrowser. We found that two noncoding mutations at the same position (g.a28271−/u) may be crucial to the high transmissibility of Alpha, Delta, and Omicron VOCs although the noncoding mutations alone cannot increase viral transmissibility. Both mutations cause an A-to-U change at the core position −3 of the Kozak sequence of the N gene and significantly reduce the protein expression ratio of ORF9b to N. Using a convergent evolutionary analysis, we found that g.a28271−/u, S:p.P681H/R, and N:p.R203K/M occur independently on three VOC lineages, suggesting that coordinated changes of S, N, and ORF9b proteins are crucial to high viral transmissibility. Our results provide new insights into high viral transmissibility co-modulated by advantageous noncoding and nonsynonymous changes. Oxford University Press 2023-06-21 /pmc/articles/PMC10287536/ /pubmed/37341536 http://dx.doi.org/10.1093/molbev/msad142 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Society for Molecular Biology and Evolution. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com |
spellingShingle | Discoveries Yang, Jianing Cui, Yingmin Yu, Dalang Zhang, Guoqing Cao, Ruifang Gu, Zhili Dai, Guangyi Wu, Xiaoxian Ling, Yunchao Yi, Chunyan Sun, Xiaoyu Sun, Bing Lin, Xin Zhang, Yu Zhao, Guo-Ping Li, Yixue Pan, Yi-Hsuan Li, Haipeng A Noncoding A-to-U Kozak Site Change Related to the High Transmissibility of Alpha, Delta, and Omicron VOCs |
title | A Noncoding A-to-U Kozak Site Change Related to the High Transmissibility of Alpha, Delta, and Omicron VOCs |
title_full | A Noncoding A-to-U Kozak Site Change Related to the High Transmissibility of Alpha, Delta, and Omicron VOCs |
title_fullStr | A Noncoding A-to-U Kozak Site Change Related to the High Transmissibility of Alpha, Delta, and Omicron VOCs |
title_full_unstemmed | A Noncoding A-to-U Kozak Site Change Related to the High Transmissibility of Alpha, Delta, and Omicron VOCs |
title_short | A Noncoding A-to-U Kozak Site Change Related to the High Transmissibility of Alpha, Delta, and Omicron VOCs |
title_sort | noncoding a-to-u kozak site change related to the high transmissibility of alpha, delta, and omicron vocs |
topic | Discoveries |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10287536/ https://www.ncbi.nlm.nih.gov/pubmed/37341536 http://dx.doi.org/10.1093/molbev/msad142 |
work_keys_str_mv | AT yangjianing anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT cuiyingmin anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT yudalang anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT zhangguoqing anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT caoruifang anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT guzhili anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT daiguangyi anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT wuxiaoxian anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT lingyunchao anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT yichunyan anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT sunxiaoyu anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT sunbing anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT linxin anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT zhangyu anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT zhaoguoping anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT liyixue anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT panyihsuan anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT lihaipeng anoncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT yangjianing noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT cuiyingmin noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT yudalang noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT zhangguoqing noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT caoruifang noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT guzhili noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT daiguangyi noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT wuxiaoxian noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT lingyunchao noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT yichunyan noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT sunxiaoyu noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT sunbing noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT linxin noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT zhangyu noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT zhaoguoping noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT liyixue noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT panyihsuan noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs AT lihaipeng noncodingatoukozaksitechangerelatedtothehightransmissibilityofalphadeltaandomicronvocs |