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A human iPSC-array-based GWAS identifies a virus susceptibility locus in the NDUFA4 gene and functional variants

Population-based studies to identify disease-associated risk alleles typically require samples from a large number of individuals. Here, we report a human-induced pluripotent stem cell (hiPSC)-based screening strategy to link human genetics with viral infectivity. A genome-wide association study (GW...

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Autores principales: Han, Yuling, Tan, Lei, Zhou, Ting, Yang, Liuliu, Carrau, Lucia, Lacko, Lauretta A., Saeed, Mohsan, Zhu, Jiajun, Zhao, Zeping, Nilsson-Payant, Benjamin E., Lira Neto, Filipe Tenorio, Cahir, Clare, Giani, Alice Maria, Chai, Jin Chou, Li, Yang, Dong, Xue, Moroziewicz, Dorota, Paull, Daniel, Zhang, Tuo, Koo, Soyeon, Tan, Christina, Danziger, Ron, Ba, Qian, Feng, Lingling, Chen, Zhengming, Zhong, Aaron, Wise, Gilbert J., Xiang, Jenny Z., Wang, Hui, Schwartz, Robert E., tenOever, Benjamin R., Noggle, Scott A., Rice, Charles M., Qi, Qibin, Evans, Todd, Chen, Shuibing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9550219/
https://www.ncbi.nlm.nih.gov/pubmed/36206731
http://dx.doi.org/10.1016/j.stem.2022.09.008
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author Han, Yuling
Tan, Lei
Zhou, Ting
Yang, Liuliu
Carrau, Lucia
Lacko, Lauretta A.
Saeed, Mohsan
Zhu, Jiajun
Zhao, Zeping
Nilsson-Payant, Benjamin E.
Lira Neto, Filipe Tenorio
Cahir, Clare
Giani, Alice Maria
Chai, Jin Chou
Li, Yang
Dong, Xue
Moroziewicz, Dorota
Paull, Daniel
Zhang, Tuo
Koo, Soyeon
Tan, Christina
Danziger, Ron
Ba, Qian
Feng, Lingling
Chen, Zhengming
Zhong, Aaron
Wise, Gilbert J.
Xiang, Jenny Z.
Wang, Hui
Schwartz, Robert E.
tenOever, Benjamin R.
Noggle, Scott A.
Rice, Charles M.
Qi, Qibin
Evans, Todd
Chen, Shuibing
author_facet Han, Yuling
Tan, Lei
Zhou, Ting
Yang, Liuliu
Carrau, Lucia
Lacko, Lauretta A.
Saeed, Mohsan
Zhu, Jiajun
Zhao, Zeping
Nilsson-Payant, Benjamin E.
Lira Neto, Filipe Tenorio
Cahir, Clare
Giani, Alice Maria
Chai, Jin Chou
Li, Yang
Dong, Xue
Moroziewicz, Dorota
Paull, Daniel
Zhang, Tuo
Koo, Soyeon
Tan, Christina
Danziger, Ron
Ba, Qian
Feng, Lingling
Chen, Zhengming
Zhong, Aaron
Wise, Gilbert J.
Xiang, Jenny Z.
Wang, Hui
Schwartz, Robert E.
tenOever, Benjamin R.
Noggle, Scott A.
Rice, Charles M.
Qi, Qibin
Evans, Todd
Chen, Shuibing
author_sort Han, Yuling
collection PubMed
description Population-based studies to identify disease-associated risk alleles typically require samples from a large number of individuals. Here, we report a human-induced pluripotent stem cell (hiPSC)-based screening strategy to link human genetics with viral infectivity. A genome-wide association study (GWAS) identified a cluster of single-nucleotide polymorphisms (SNPs) in a cis-regulatory region of the NDUFA4 gene, which was associated with susceptibility to Zika virus (ZIKV) infection. Loss of NDUFA4 led to decreased sensitivity to ZIKV, dengue virus, and SARS-CoV-2 infection. Isogenic hiPSC lines carrying non-risk alleles of SNPs or deletion of the cis-regulatory region lower sensitivity to viral infection. Mechanistic studies indicated that loss/reduction of NDUFA4 causes mitochondrial stress, which leads to the leakage of mtDNA and thereby upregulation of type I interferon signaling. This study provides proof-of-principle for the application of iPSC arrays in GWAS and identifies NDUFA4 as a previously unknown susceptibility locus for viral infection.
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spelling pubmed-95502192022-10-13 A human iPSC-array-based GWAS identifies a virus susceptibility locus in the NDUFA4 gene and functional variants Han, Yuling Tan, Lei Zhou, Ting Yang, Liuliu Carrau, Lucia Lacko, Lauretta A. Saeed, Mohsan Zhu, Jiajun Zhao, Zeping Nilsson-Payant, Benjamin E. Lira Neto, Filipe Tenorio Cahir, Clare Giani, Alice Maria Chai, Jin Chou Li, Yang Dong, Xue Moroziewicz, Dorota Paull, Daniel Zhang, Tuo Koo, Soyeon Tan, Christina Danziger, Ron Ba, Qian Feng, Lingling Chen, Zhengming Zhong, Aaron Wise, Gilbert J. Xiang, Jenny Z. Wang, Hui Schwartz, Robert E. tenOever, Benjamin R. Noggle, Scott A. Rice, Charles M. Qi, Qibin Evans, Todd Chen, Shuibing Cell Stem Cell Article Population-based studies to identify disease-associated risk alleles typically require samples from a large number of individuals. Here, we report a human-induced pluripotent stem cell (hiPSC)-based screening strategy to link human genetics with viral infectivity. A genome-wide association study (GWAS) identified a cluster of single-nucleotide polymorphisms (SNPs) in a cis-regulatory region of the NDUFA4 gene, which was associated with susceptibility to Zika virus (ZIKV) infection. Loss of NDUFA4 led to decreased sensitivity to ZIKV, dengue virus, and SARS-CoV-2 infection. Isogenic hiPSC lines carrying non-risk alleles of SNPs or deletion of the cis-regulatory region lower sensitivity to viral infection. Mechanistic studies indicated that loss/reduction of NDUFA4 causes mitochondrial stress, which leads to the leakage of mtDNA and thereby upregulation of type I interferon signaling. This study provides proof-of-principle for the application of iPSC arrays in GWAS and identifies NDUFA4 as a previously unknown susceptibility locus for viral infection. Cell Press 2022-10-06 /pmc/articles/PMC9550219/ /pubmed/36206731 http://dx.doi.org/10.1016/j.stem.2022.09.008 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Han, Yuling
Tan, Lei
Zhou, Ting
Yang, Liuliu
Carrau, Lucia
Lacko, Lauretta A.
Saeed, Mohsan
Zhu, Jiajun
Zhao, Zeping
Nilsson-Payant, Benjamin E.
Lira Neto, Filipe Tenorio
Cahir, Clare
Giani, Alice Maria
Chai, Jin Chou
Li, Yang
Dong, Xue
Moroziewicz, Dorota
Paull, Daniel
Zhang, Tuo
Koo, Soyeon
Tan, Christina
Danziger, Ron
Ba, Qian
Feng, Lingling
Chen, Zhengming
Zhong, Aaron
Wise, Gilbert J.
Xiang, Jenny Z.
Wang, Hui
Schwartz, Robert E.
tenOever, Benjamin R.
Noggle, Scott A.
Rice, Charles M.
Qi, Qibin
Evans, Todd
Chen, Shuibing
A human iPSC-array-based GWAS identifies a virus susceptibility locus in the NDUFA4 gene and functional variants
title A human iPSC-array-based GWAS identifies a virus susceptibility locus in the NDUFA4 gene and functional variants
title_full A human iPSC-array-based GWAS identifies a virus susceptibility locus in the NDUFA4 gene and functional variants
title_fullStr A human iPSC-array-based GWAS identifies a virus susceptibility locus in the NDUFA4 gene and functional variants
title_full_unstemmed A human iPSC-array-based GWAS identifies a virus susceptibility locus in the NDUFA4 gene and functional variants
title_short A human iPSC-array-based GWAS identifies a virus susceptibility locus in the NDUFA4 gene and functional variants
title_sort human ipsc-array-based gwas identifies a virus susceptibility locus in the ndufa4 gene and functional variants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9550219/
https://www.ncbi.nlm.nih.gov/pubmed/36206731
http://dx.doi.org/10.1016/j.stem.2022.09.008
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