A functional variant in the cystathionine β-synthase gene promoter significantly reduces congenital heart disease susceptibility in a Han Chinese population

被引:0
|
作者
Jian-Yuan Zhao
Xue-Yan Yang
Kai-Hu Shi
Shu-Na Sun
Jia Hou
Zhi-Zhou Ye
Jue Wang
Wen-Yuan Duan
Bin Qiao
Yi-Jiang Chen
Hong-Bing Shen
Guo-Ying Huang
Li Jin
Hong-Yan Wang
机构
[1] The State Key Laboratory of Genetic Engineering and MOE Key Laboratory of Contemporary Anthropology,Department of Thoracic and Cardiovascular Surgery
[2] School of Life Sciences,Department of Epidemiology and Biostatistics
[3] Fudan University,undefined
[4] The Second Hospital of Anhui Medical University,undefined
[5] Children's Hospital of Fudan University,undefined
[6] Institute of Cardiovascular Disease,undefined
[7] General Hospital of Jinan Military Region,undefined
[8] The First Affiliated Hospital of Nanjing Medical University,undefined
[9] School of Public Health,undefined
[10] Nanjing Medical University,undefined
[11] Institute of Sports Science and Technology,undefined
[12] Administration of Sports of Anhui Province,undefined
[13] The Institutes of Biomedical Sciences,undefined
[14] Fudan University,undefined
来源
Cell Research | 2013年 / 23卷
关键词
congenital heart disease; cystathionine β-synthase; non-coding variant; homocysteine;
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学科分类号
摘要
Homocysteine is an independent risk factor for various cardiovascular diseases. There are two ways to remove homocysteine from embryonic cardiac cells: remethylation to form methionine or transsulfuration to form cysteine. Cystathionine β-synthase (CBS) catalyzes the first step of homocysteine transsulfuration as a rate-limiting enzyme. In this study, we identified a functional variant −4673C>G (rs2850144) in the CBS gene promoter region that significantly reduces the susceptibility to congenital heart disease (CHD) in a Han Chinese population consisting of 2 340 CHD patients and 2 270 controls. Individuals carrying the heterozygous CG and homozygous GG genotypes had a 15% (odds ratio (OR) = 0.85, 95% confidence interval (CI) = 0.75-0.96, P = 0.011) and 40% (OR = 0.60, 95% CI = 0.49-0.73, P = 1.78 × 10−7) reduced risk to develop CHD than the wild-type CC genotype carriers in the combined samples, respectively. Additional stratified analyses demonstrated that CBS −4673C>G is significantly related to septation defects and conotruncal defects. In vivo detection of CBS mRNA levels in human cardiac tissues and in vitro luciferase assays consistently showed that the minor G allele significantly increased CBS transcription. A functional analysis revealed that both the attenuated transcription suppressor SP1 binding affinity and the CBS promoter hypomethylation specifically linked with the minor G allele contributed to the remarkably upregulated CBS expression. Consequently, the carriers with genetically increased CBS expression would benefit from the protection due to the low homocysteine levels maintained by CBS in certain cells during the critical heart development stages. These results shed light on unexpected role of CBS and highlight the importance of homocysteine removal in cardiac development.
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页码:242 / 253
页数:11
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