GDF1启动子功能变异与先天性心脏病风险的关系及Nkx2.5的调控作用

Clinical Science (London, England : 1979) Pub Date : 2019-06-17 Print Date: 2019-06-28 DOI:10.1042/CS20181024
Xiaobo Gao, Panpan Zheng, Liping Yang, Haiyan Luo, Chen Zhang, Yongqiang Qiu, Guoying Huang, Wei Sheng, Xu Ma, Cailing Lu
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引用次数: 7

摘要

GDF1在左右模式中起重要作用,GDF1编码区的基因突变与先天性心脏病(CHD)有关。然而,散发性冠心病GDF1启动子的遗传变异及其表达调控尚不清楚。GDF1启动子遗传变异与冠心病的关系通过两项病例对照研究进行了研究,第一项研究包括1084例和1198例对照,第二项研究包括582例和615例对照。我们发现了一个单核苷酸多态性(SNP) rs181317402和两个位于GDF1启动子区域的新基因突变。合并样本的分析显示,整体或室间隔缺损或法洛四联症冠心病患者与对照组的rs181317402 T/G多态性基因型和等位基因频率显著相关。rs181317402等位基因G多态性与冠心病风险降低显著相关。此外,荧光素酶、染色质免疫沉淀和DNA拉下实验表明,Nkx2.5通过结合GDF1启动子反激活GDF1的表达。荧光素酶活性测定显示,rs181317402等位基因G显著提高了GDF1启动子的基础活性和nkx2.5介导的活性,而两个基因突变的作用相反。在18例冠心病患者中,rs181317402与TT基因型相比,TG基因型与GDF1 mRNA水平显著升高相关。我们的研究结果首次表明,Nkx2.5作用于GDF1的上游,GDF1启动子的遗传变异可能通过改变其表达而潜在地赋予散发性冠心病的遗传易感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Association of functional variant in GDF1 promoter with risk of congenital heart disease and its regulation by Nkx2.5.
GDF1 plays an important role in left-right patterning and genetic mutations in the coding region of GDF1 are associated with congenital heart disease (CHD). However, the genetic variation in the promoter of GDF1 with sporadic CHD and its expression regulation is little known. The association of the genetic variation in GDF1 promoter with CHD was examined in two case-control studies, including 1084 cases and 1198 controls in the first study and 582 cases and 615 controls in the second study. We identified one single nucleotide polymorphism (SNP) rs181317402 and two novel genetic mutations located in the promoter region of GDF1. Analysis of combined samples revealed a significant association in genotype and allele frequencies of rs181317402 T/G polymorphism between CHD cases in overall or ventricular septal defects or Tetralogy of Fallot and the control group. rs181317402 allele G polymorphism was significantly associated with a decreased risk of CHD. Furthermore, luciferase assay, chromatin immunoprecipitation and DNA pulldown assay indicated that Nkx2.5 transactivated the expression of GDF1 by binding to the promoter of GDF1. Luciferase activity assay showed that rs181317402 allele G significantly increased the basal and Nkx2.5-mediated activity of GDF1 promoter, while the two genetic mutations had the opposite effect. rs181317402 TG genotype was associated with significantly increased mRNA level of GDF1 compared with TT genotype in 18 CHD individuals. Our results demonstrate for the first time that Nkx2.5 acts upstream of GDF1 and the genetic variants in GDF1 promoter may confer genetic susceptibility to sporadic CHD potentially by altering its expression.
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