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Transcriptomic analysis reveals novel mechanisms of SARS‐CoV‐2 infection in human lung cells

BACKGROUND: Severe acute respiratory syndrome coronavirus clade 2 (SARS‐CoV‐2) is a single‐stranded RNA virus responsible for the global pandemic of the coronavirus disease‐2019 (COVID‐19). To date, there are still no effective approaches for the prevention and treatment of COVID‐19. OBJECTIVE: The...

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Autores principales: Yang, Shaomin, Wu, Songbin, Yu, Zhijian, Huang, Jiabin, Zhong, Xia, Liu, Xiaodong, Zhu, Hua, Xiao, Lizu, Deng, Qiwen, Sun, Wuping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7654422/
https://www.ncbi.nlm.nih.gov/pubmed/33124193
http://dx.doi.org/10.1002/iid3.366
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author Yang, Shaomin
Wu, Songbin
Yu, Zhijian
Huang, Jiabin
Zhong, Xia
Liu, Xiaodong
Zhu, Hua
Xiao, Lizu
Deng, Qiwen
Sun, Wuping
author_facet Yang, Shaomin
Wu, Songbin
Yu, Zhijian
Huang, Jiabin
Zhong, Xia
Liu, Xiaodong
Zhu, Hua
Xiao, Lizu
Deng, Qiwen
Sun, Wuping
author_sort Yang, Shaomin
collection PubMed
description BACKGROUND: Severe acute respiratory syndrome coronavirus clade 2 (SARS‐CoV‐2) is a single‐stranded RNA virus responsible for the global pandemic of the coronavirus disease‐2019 (COVID‐19). To date, there are still no effective approaches for the prevention and treatment of COVID‐19. OBJECTIVE: The present study aims to explore the possible mechanisms of SARS‐CoV‐2 infection in human lung cells. METHODS: Data interpretation was conducted by recruiting bioinformatics analysis, including Gene Ontology and Kyoto Encyclopedia of Genes and Genomes pathways analysis using downloaded data from the NCBI Gene Expression Omnibus database. RESULTS: The present study demonstrated that SARS‐CoV‐2 infection induces the upregulation of 14 interferon‐stimulated genes, indicative of immune, and interferon responses to the virus. Notably, genes for pyrimidine metabolism and steroid hormone biosynthesis are selectively enriched in human lung cells after SARS‐CoV‐2 infection, suggesting that altered pyrimidine metabolism and steroid biosynthesis are remarkable, and perhaps druggable features after SARS‐CoV‐2 infection. Besides, there is a strong positive correlation between viral ORF1ab, ORF6, and angiotensin‐converting enzyme 2 (ACE2) expression in human lung cells, implying that ACE2 facilitates SARS‐CoV‐2 infection and replication in host cells probably through the induction of ORF1ab and ORF6.
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spelling pubmed-76544222020-11-16 Transcriptomic analysis reveals novel mechanisms of SARS‐CoV‐2 infection in human lung cells Yang, Shaomin Wu, Songbin Yu, Zhijian Huang, Jiabin Zhong, Xia Liu, Xiaodong Zhu, Hua Xiao, Lizu Deng, Qiwen Sun, Wuping Immun Inflamm Dis Original Research BACKGROUND: Severe acute respiratory syndrome coronavirus clade 2 (SARS‐CoV‐2) is a single‐stranded RNA virus responsible for the global pandemic of the coronavirus disease‐2019 (COVID‐19). To date, there are still no effective approaches for the prevention and treatment of COVID‐19. OBJECTIVE: The present study aims to explore the possible mechanisms of SARS‐CoV‐2 infection in human lung cells. METHODS: Data interpretation was conducted by recruiting bioinformatics analysis, including Gene Ontology and Kyoto Encyclopedia of Genes and Genomes pathways analysis using downloaded data from the NCBI Gene Expression Omnibus database. RESULTS: The present study demonstrated that SARS‐CoV‐2 infection induces the upregulation of 14 interferon‐stimulated genes, indicative of immune, and interferon responses to the virus. Notably, genes for pyrimidine metabolism and steroid hormone biosynthesis are selectively enriched in human lung cells after SARS‐CoV‐2 infection, suggesting that altered pyrimidine metabolism and steroid biosynthesis are remarkable, and perhaps druggable features after SARS‐CoV‐2 infection. Besides, there is a strong positive correlation between viral ORF1ab, ORF6, and angiotensin‐converting enzyme 2 (ACE2) expression in human lung cells, implying that ACE2 facilitates SARS‐CoV‐2 infection and replication in host cells probably through the induction of ORF1ab and ORF6. John Wiley and Sons Inc. 2020-10-30 /pmc/articles/PMC7654422/ /pubmed/33124193 http://dx.doi.org/10.1002/iid3.366 Text en © 2020 The Authors. Immunity, Inflammation and Disease published by John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Yang, Shaomin
Wu, Songbin
Yu, Zhijian
Huang, Jiabin
Zhong, Xia
Liu, Xiaodong
Zhu, Hua
Xiao, Lizu
Deng, Qiwen
Sun, Wuping
Transcriptomic analysis reveals novel mechanisms of SARS‐CoV‐2 infection in human lung cells
title Transcriptomic analysis reveals novel mechanisms of SARS‐CoV‐2 infection in human lung cells
title_full Transcriptomic analysis reveals novel mechanisms of SARS‐CoV‐2 infection in human lung cells
title_fullStr Transcriptomic analysis reveals novel mechanisms of SARS‐CoV‐2 infection in human lung cells
title_full_unstemmed Transcriptomic analysis reveals novel mechanisms of SARS‐CoV‐2 infection in human lung cells
title_short Transcriptomic analysis reveals novel mechanisms of SARS‐CoV‐2 infection in human lung cells
title_sort transcriptomic analysis reveals novel mechanisms of sars‐cov‐2 infection in human lung cells
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7654422/
https://www.ncbi.nlm.nih.gov/pubmed/33124193
http://dx.doi.org/10.1002/iid3.366
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