Functional mechanisms for diabetic nephropathy-associated genetic variants

被引:0
作者
Chengxin Gong
Yonghu Xu
Yongfang Fan
Xingzi Liu
Chaopeng Xiong
Luling He
Changle Liu
Shenqiang Rao
Wen Xiao
Lu Ding
Lan Tang
Fangfang Hu
Mengqi Xiong
Mei Yang
Shangdong Liang
Hong Xu
机构
[1] JiangXi Medical College of Nanchang University,Department of Physiology
[2] Fuzhou Medical College of Nanchang University,Department of Nursing
[3] Jiangxi Medical College of Nanchang University,Department of Pathology
[4] Jiangxi Medical College of Nanchang University,Department of Clinic Medicine
[5] China Pharmaceutical University,School of Life Science and Technology
来源
Genes & Genomics | 2016年 / 38卷
关键词
Functional mechanism; Integrative analysis; eQTL; Diabetic nephropathy; SNP;
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中图分类号
学科分类号
摘要
Diabetic nephropathy (DN) is one of the major complications of diabetes. A tremendous amount of genetic variations have been identified to be associated with DN. However, most of them only generate from statistical associations at the DNA level, generally without direct functional evidence regarding their association mechanisms underlying DN. Based on the publicly available datasets and resources, this study performed integrative analyses (expression quantitative trait loci analysis, differential gene expression analysis and functional prediction analysis) to detect the molecular functional mechanisms underlying the associations for DN. Among 150 selected (P < E-4) genetic associations that were archived in the public databases, two single nucleotide polymorphisms (SNPs) (rs3135377 and rs9469220) have been found to act as cis-effect regulators of the “identified” gene (HLA-DRA and HLA-DRB1). These eQTL genes have differential expression signals in the DN-associated cell groups. These SNPs were predicted as regulatory sites by utilizing online prediction tools. Our data suggest potential mechanistic links underlying the association between DN and two identified SNPs. These results could help us to have a deeper understanding of the functional relevance of genetic variants with susceptibility to DN, which is useful for pursuit of in-depth validation studies to dissect their involvements and molecular functional mechanisms in DN.
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页码:595 / 600
页数:5
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