Metabolic Pathway Genes Associated with Susceptibility Genes to Coronary Artery Disease

Coronary artery disease (CAD) is one of the leading threats to global health. Previous research has proven that metabolic pathway disorders, such as high blood lipids and diabetes, are one of the risk factors that mostly cause CAD. However, the crosstalk between metabolic pathways and CAD was mostly...

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Main Authors: Heng Lu, Yi Chen, Linlin Li
Format: Article
Language:English
Published: Wiley 2018-01-01
Series:International Journal of Genomics
Online Access:http://dx.doi.org/10.1155/2018/9025841
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author Heng Lu
Yi Chen
Linlin Li
author_facet Heng Lu
Yi Chen
Linlin Li
author_sort Heng Lu
collection DOAJ
description Coronary artery disease (CAD) is one of the leading threats to global health. Previous research has proven that metabolic pathway disorders, such as high blood lipids and diabetes, are one of the risk factors that mostly cause CAD. However, the crosstalk between metabolic pathways and CAD was mostly studied on physiology processes by analyzing a single gene function. A canonical correlation analysis was used to identify the metabolic pathways, which were integrated as a unit to coexpress with CAD susceptibility genes, and to resolve additional metabolic factors that are related to CAD. Seven pathways, including citrate cycle, ubiquinone, terpenoid quinone biosynthesis, and N-glycan biosynthesis, were identified as an integrated unit coexpressed with CAD genes. These pathways could not be revealed as a coexpressed pathway through traditional methods as each single gene has weak correlation. Furthermore, sets of genes in these pathways were candidate markers for diagnosis and detection from patients’ serum.
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spelling doaj-art-567eb243f75c439face007bdab20f2442025-08-20T02:05:59ZengWileyInternational Journal of Genomics2314-436X2314-43782018-01-01201810.1155/2018/90258419025841Metabolic Pathway Genes Associated with Susceptibility Genes to Coronary Artery DiseaseHeng Lu0Yi Chen1Linlin Li2Department of Cardiovascular Surgery, Union Hospital, Fujian Medical University, Fuzhou, ChinaDepartment of Cardiovascular Surgery, Union Hospital, Fujian Medical University, Fuzhou, ChinaDepartment of Nephrology, Union Hospital, Fujian Medical University, Fuzhou, ChinaCoronary artery disease (CAD) is one of the leading threats to global health. Previous research has proven that metabolic pathway disorders, such as high blood lipids and diabetes, are one of the risk factors that mostly cause CAD. However, the crosstalk between metabolic pathways and CAD was mostly studied on physiology processes by analyzing a single gene function. A canonical correlation analysis was used to identify the metabolic pathways, which were integrated as a unit to coexpress with CAD susceptibility genes, and to resolve additional metabolic factors that are related to CAD. Seven pathways, including citrate cycle, ubiquinone, terpenoid quinone biosynthesis, and N-glycan biosynthesis, were identified as an integrated unit coexpressed with CAD genes. These pathways could not be revealed as a coexpressed pathway through traditional methods as each single gene has weak correlation. Furthermore, sets of genes in these pathways were candidate markers for diagnosis and detection from patients’ serum.http://dx.doi.org/10.1155/2018/9025841
spellingShingle Heng Lu
Yi Chen
Linlin Li
Metabolic Pathway Genes Associated with Susceptibility Genes to Coronary Artery Disease
International Journal of Genomics
title Metabolic Pathway Genes Associated with Susceptibility Genes to Coronary Artery Disease
title_full Metabolic Pathway Genes Associated with Susceptibility Genes to Coronary Artery Disease
title_fullStr Metabolic Pathway Genes Associated with Susceptibility Genes to Coronary Artery Disease
title_full_unstemmed Metabolic Pathway Genes Associated with Susceptibility Genes to Coronary Artery Disease
title_short Metabolic Pathway Genes Associated with Susceptibility Genes to Coronary Artery Disease
title_sort metabolic pathway genes associated with susceptibility genes to coronary artery disease
url http://dx.doi.org/10.1155/2018/9025841
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AT yichen metabolicpathwaygenesassociatedwithsusceptibilitygenestocoronaryarterydisease
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