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Multiomics Analysis of Genetics and Epigenetics Reveals Pathogenesis and Therapeutic Targets for Atrial Fibrillation

OBJECTIVE: This study is aimed at understanding the molecular mechanisms and exploring potential therapeutic targets for atrial fibrillation (AF) by multiomics analysis. METHODS: Transcriptomics and methylation data of AF patients were retrieved from the Gene Expression Omnibus (GEO). Differentially...

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Autores principales: Liu, Li, Huang, Jianjun, Wei, Baomin, Mo, Jianjiao, Wei, Qinjiang, Chen, Chengcai, Yan, Wei, Huang, Xiannan, He, Fengzhen, Qin, Lingling, Huang, Hehua, Li, Xue, Pan, Xingshou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8018871/
https://www.ncbi.nlm.nih.gov/pubmed/33834070
http://dx.doi.org/10.1155/2021/6644827
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author Liu, Li
Huang, Jianjun
Wei, Baomin
Mo, Jianjiao
Wei, Qinjiang
Chen, Chengcai
Yan, Wei
Huang, Xiannan
He, Fengzhen
Qin, Lingling
Huang, Hehua
Li, Xue
Pan, Xingshou
author_facet Liu, Li
Huang, Jianjun
Wei, Baomin
Mo, Jianjiao
Wei, Qinjiang
Chen, Chengcai
Yan, Wei
Huang, Xiannan
He, Fengzhen
Qin, Lingling
Huang, Hehua
Li, Xue
Pan, Xingshou
author_sort Liu, Li
collection PubMed
description OBJECTIVE: This study is aimed at understanding the molecular mechanisms and exploring potential therapeutic targets for atrial fibrillation (AF) by multiomics analysis. METHODS: Transcriptomics and methylation data of AF patients were retrieved from the Gene Expression Omnibus (GEO). Differentially expressed genes (DEGs) and differentially methylated sites between AF and normal samples were screened. Then, highly expressed and hypomethylated and lowly expressed and hypermethylated genes were identified for AF. Weighted gene coexpression network analysis (WGCNA) was presented to construct AF-related coexpression networks. 52 AF blood samples were used for whole exome sequence. The mutation was visualized by the maftools package in R. Key genes were validated in AF using independent datasets. RESULTS: DEGs were identified between AF and controls, which were enriched in neutrophil activation and regulation of actin cytoskeleton. RHOA, CCR2, CASP8, and SYNPO2L exhibited abnormal expression and methylation, which have been confirmed to be related to AF. PCDHA family genes had high methylation and low expression in AF. We constructed two AF-related coexpression modules. Single-nucleotide polymorphism (SNP) was the most common mutation type in AF, especially T > C. MUC4 was the most frequent mutation gene, followed by PHLDA1, AHNAK2, and MAML3. There was no statistical difference in expression of AHNAK2 and MAML3, for AF. PHLDA1 and MUC4 were confirmed to be abnormally expressed in AF. CONCLUSION: Our findings identified DEGs related to DNA methylation and mutation for AF, which may offer possible therapeutic targets and a new insight into the pathogenesis of AF from a multiomics perspective.
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spelling pubmed-80188712021-04-07 Multiomics Analysis of Genetics and Epigenetics Reveals Pathogenesis and Therapeutic Targets for Atrial Fibrillation Liu, Li Huang, Jianjun Wei, Baomin Mo, Jianjiao Wei, Qinjiang Chen, Chengcai Yan, Wei Huang, Xiannan He, Fengzhen Qin, Lingling Huang, Hehua Li, Xue Pan, Xingshou Biomed Res Int Research Article OBJECTIVE: This study is aimed at understanding the molecular mechanisms and exploring potential therapeutic targets for atrial fibrillation (AF) by multiomics analysis. METHODS: Transcriptomics and methylation data of AF patients were retrieved from the Gene Expression Omnibus (GEO). Differentially expressed genes (DEGs) and differentially methylated sites between AF and normal samples were screened. Then, highly expressed and hypomethylated and lowly expressed and hypermethylated genes were identified for AF. Weighted gene coexpression network analysis (WGCNA) was presented to construct AF-related coexpression networks. 52 AF blood samples were used for whole exome sequence. The mutation was visualized by the maftools package in R. Key genes were validated in AF using independent datasets. RESULTS: DEGs were identified between AF and controls, which were enriched in neutrophil activation and regulation of actin cytoskeleton. RHOA, CCR2, CASP8, and SYNPO2L exhibited abnormal expression and methylation, which have been confirmed to be related to AF. PCDHA family genes had high methylation and low expression in AF. We constructed two AF-related coexpression modules. Single-nucleotide polymorphism (SNP) was the most common mutation type in AF, especially T > C. MUC4 was the most frequent mutation gene, followed by PHLDA1, AHNAK2, and MAML3. There was no statistical difference in expression of AHNAK2 and MAML3, for AF. PHLDA1 and MUC4 were confirmed to be abnormally expressed in AF. CONCLUSION: Our findings identified DEGs related to DNA methylation and mutation for AF, which may offer possible therapeutic targets and a new insight into the pathogenesis of AF from a multiomics perspective. Hindawi 2021-03-25 /pmc/articles/PMC8018871/ /pubmed/33834070 http://dx.doi.org/10.1155/2021/6644827 Text en Copyright © 2021 Li Liu et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Liu, Li
Huang, Jianjun
Wei, Baomin
Mo, Jianjiao
Wei, Qinjiang
Chen, Chengcai
Yan, Wei
Huang, Xiannan
He, Fengzhen
Qin, Lingling
Huang, Hehua
Li, Xue
Pan, Xingshou
Multiomics Analysis of Genetics and Epigenetics Reveals Pathogenesis and Therapeutic Targets for Atrial Fibrillation
title Multiomics Analysis of Genetics and Epigenetics Reveals Pathogenesis and Therapeutic Targets for Atrial Fibrillation
title_full Multiomics Analysis of Genetics and Epigenetics Reveals Pathogenesis and Therapeutic Targets for Atrial Fibrillation
title_fullStr Multiomics Analysis of Genetics and Epigenetics Reveals Pathogenesis and Therapeutic Targets for Atrial Fibrillation
title_full_unstemmed Multiomics Analysis of Genetics and Epigenetics Reveals Pathogenesis and Therapeutic Targets for Atrial Fibrillation
title_short Multiomics Analysis of Genetics and Epigenetics Reveals Pathogenesis and Therapeutic Targets for Atrial Fibrillation
title_sort multiomics analysis of genetics and epigenetics reveals pathogenesis and therapeutic targets for atrial fibrillation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8018871/
https://www.ncbi.nlm.nih.gov/pubmed/33834070
http://dx.doi.org/10.1155/2021/6644827
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