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Scleral HIF-1α is a prominent regulatory candidate for genetic and environmental interactions in human myopia pathogenesis

BACKGROUND: Myopia is a good model for understanding the interaction between genetics and environmental stimuli. Here we dissect the biological processes affecting myopia progression. METHODS: Human Genetic Analyses: (1) gene set analysis (GSA) of new genome wide association study (GWAS) data for 59...

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Autores principales: Zhao, Fei, Zhang, Dake, Zhou, Qingyi, Zhao, Fuxin, He, Mingguang, Yang, Zhenglin, Su, Yongchao, Zhai, Ying, Yan, Jiaofeng, Zhang, Guoyun, Xue, Anquan, Tang, Jing, Han, Xiaotong, Shi, Yi, Zhu, Yun, Liu, Tianzi, Zhuang, Wenjuan, Huang, Lulin, Hong, Yaqiang, Wu, Deng, Li, Yingxiang, Lu, Qinkang, Chen, Wei, Jiao, Shiming, Wang, Qiongsi, Srinivasalu, Nethrajeith, Wen, Yingying, Zeng, Changqing, Qu, Jia, Zhou, Xiangtian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7348000/
https://www.ncbi.nlm.nih.gov/pubmed/32652319
http://dx.doi.org/10.1016/j.ebiom.2020.102878
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author Zhao, Fei
Zhang, Dake
Zhou, Qingyi
Zhao, Fuxin
He, Mingguang
Yang, Zhenglin
Su, Yongchao
Zhai, Ying
Yan, Jiaofeng
Zhang, Guoyun
Xue, Anquan
Tang, Jing
Han, Xiaotong
Shi, Yi
Zhu, Yun
Liu, Tianzi
Zhuang, Wenjuan
Huang, Lulin
Hong, Yaqiang
Wu, Deng
Li, Yingxiang
Lu, Qinkang
Chen, Wei
Jiao, Shiming
Wang, Qiongsi
Srinivasalu, Nethrajeith
Wen, Yingying
Zeng, Changqing
Qu, Jia
Zhou, Xiangtian
author_facet Zhao, Fei
Zhang, Dake
Zhou, Qingyi
Zhao, Fuxin
He, Mingguang
Yang, Zhenglin
Su, Yongchao
Zhai, Ying
Yan, Jiaofeng
Zhang, Guoyun
Xue, Anquan
Tang, Jing
Han, Xiaotong
Shi, Yi
Zhu, Yun
Liu, Tianzi
Zhuang, Wenjuan
Huang, Lulin
Hong, Yaqiang
Wu, Deng
Li, Yingxiang
Lu, Qinkang
Chen, Wei
Jiao, Shiming
Wang, Qiongsi
Srinivasalu, Nethrajeith
Wen, Yingying
Zeng, Changqing
Qu, Jia
Zhou, Xiangtian
author_sort Zhao, Fei
collection PubMed
description BACKGROUND: Myopia is a good model for understanding the interaction between genetics and environmental stimuli. Here we dissect the biological processes affecting myopia progression. METHODS: Human Genetic Analyses: (1) gene set analysis (GSA) of new genome wide association study (GWAS) data for 593 individuals with high myopia (refraction ≤ -6 diopters [D]); (2) over-representation analysis (ORA) of 196 genes with de novo mutations, identified by whole genome sequencing of 45 high-myopia trio families, and (3) ORA of 284 previously reported myopia risk genes. Contributions of the enriched signaling pathways in mediating the genetic and environmental interactions during myopia development were investigated in vivo and in vitro. RESULTS: All three genetic analyses showed significant enrichment of four KEGG signaling pathways, including amphetamine addiction, extracellular matrix (ECM) receptor interaction, neuroactive ligand-receptor interaction, and regulation of actin cytoskeleton pathways. In individuals with extremely high myopia (refraction ≤ -10 D), the GSA of GWAS data revealed significant enrichment of the HIF-1α signaling pathway. Using human scleral fibroblasts, silencing the key nodal genes within protein-protein interaction networks for the enriched pathways antagonized the hypoxia-induced increase in myofibroblast transdifferentiation. In mice, scleral HIF-1α downregulation led to hyperopia, whereas upregulation resulted in myopia. In human subjects, near work, a risk factor for myopia, significantly decreased choroidal blood perfusion, which might cause scleral hypoxia. INTERPRETATION: Our study implicated the HIF-1α signaling pathway in promoting human myopia through mediating interactions between genetic and environmental factors. FUNDING: National Natural Science Foundation of China grants; Natural Science Foundation of Zhejiang Province.
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spelling pubmed-73480002020-07-14 Scleral HIF-1α is a prominent regulatory candidate for genetic and environmental interactions in human myopia pathogenesis Zhao, Fei Zhang, Dake Zhou, Qingyi Zhao, Fuxin He, Mingguang Yang, Zhenglin Su, Yongchao Zhai, Ying Yan, Jiaofeng Zhang, Guoyun Xue, Anquan Tang, Jing Han, Xiaotong Shi, Yi Zhu, Yun Liu, Tianzi Zhuang, Wenjuan Huang, Lulin Hong, Yaqiang Wu, Deng Li, Yingxiang Lu, Qinkang Chen, Wei Jiao, Shiming Wang, Qiongsi Srinivasalu, Nethrajeith Wen, Yingying Zeng, Changqing Qu, Jia Zhou, Xiangtian EBioMedicine Research paper BACKGROUND: Myopia is a good model for understanding the interaction between genetics and environmental stimuli. Here we dissect the biological processes affecting myopia progression. METHODS: Human Genetic Analyses: (1) gene set analysis (GSA) of new genome wide association study (GWAS) data for 593 individuals with high myopia (refraction ≤ -6 diopters [D]); (2) over-representation analysis (ORA) of 196 genes with de novo mutations, identified by whole genome sequencing of 45 high-myopia trio families, and (3) ORA of 284 previously reported myopia risk genes. Contributions of the enriched signaling pathways in mediating the genetic and environmental interactions during myopia development were investigated in vivo and in vitro. RESULTS: All three genetic analyses showed significant enrichment of four KEGG signaling pathways, including amphetamine addiction, extracellular matrix (ECM) receptor interaction, neuroactive ligand-receptor interaction, and regulation of actin cytoskeleton pathways. In individuals with extremely high myopia (refraction ≤ -10 D), the GSA of GWAS data revealed significant enrichment of the HIF-1α signaling pathway. Using human scleral fibroblasts, silencing the key nodal genes within protein-protein interaction networks for the enriched pathways antagonized the hypoxia-induced increase in myofibroblast transdifferentiation. In mice, scleral HIF-1α downregulation led to hyperopia, whereas upregulation resulted in myopia. In human subjects, near work, a risk factor for myopia, significantly decreased choroidal blood perfusion, which might cause scleral hypoxia. INTERPRETATION: Our study implicated the HIF-1α signaling pathway in promoting human myopia through mediating interactions between genetic and environmental factors. FUNDING: National Natural Science Foundation of China grants; Natural Science Foundation of Zhejiang Province. Elsevier 2020-07-08 /pmc/articles/PMC7348000/ /pubmed/32652319 http://dx.doi.org/10.1016/j.ebiom.2020.102878 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Zhao, Fei
Zhang, Dake
Zhou, Qingyi
Zhao, Fuxin
He, Mingguang
Yang, Zhenglin
Su, Yongchao
Zhai, Ying
Yan, Jiaofeng
Zhang, Guoyun
Xue, Anquan
Tang, Jing
Han, Xiaotong
Shi, Yi
Zhu, Yun
Liu, Tianzi
Zhuang, Wenjuan
Huang, Lulin
Hong, Yaqiang
Wu, Deng
Li, Yingxiang
Lu, Qinkang
Chen, Wei
Jiao, Shiming
Wang, Qiongsi
Srinivasalu, Nethrajeith
Wen, Yingying
Zeng, Changqing
Qu, Jia
Zhou, Xiangtian
Scleral HIF-1α is a prominent regulatory candidate for genetic and environmental interactions in human myopia pathogenesis
title Scleral HIF-1α is a prominent regulatory candidate for genetic and environmental interactions in human myopia pathogenesis
title_full Scleral HIF-1α is a prominent regulatory candidate for genetic and environmental interactions in human myopia pathogenesis
title_fullStr Scleral HIF-1α is a prominent regulatory candidate for genetic and environmental interactions in human myopia pathogenesis
title_full_unstemmed Scleral HIF-1α is a prominent regulatory candidate for genetic and environmental interactions in human myopia pathogenesis
title_short Scleral HIF-1α is a prominent regulatory candidate for genetic and environmental interactions in human myopia pathogenesis
title_sort scleral hif-1α is a prominent regulatory candidate for genetic and environmental interactions in human myopia pathogenesis
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7348000/
https://www.ncbi.nlm.nih.gov/pubmed/32652319
http://dx.doi.org/10.1016/j.ebiom.2020.102878
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