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Genetic variation in the circadian rhythm genes, clock and clif, and possible association with coronary artery disease in individuals of Chinese Han descent

机译:中国汉族个体昼夜节律基因,时钟和clif的遗传变异及其与冠心病的关系

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摘要

Clock is a core, well-established, circadian gene, and clif is a newly discovered circadian gene, both of which not only maintain the circadian rhythm of cells but also regulate some organic functions. The purpose of this study was to determine whether genetic variations (single nucleotide polymorphisms - SNPs) in clock and/or clif genes associate with coronary artery disease (CAD). We silenced the clock and clif genes in cells and mice. The mRNA levels of clock, clif, pai-1, and tm of mice were examined using Reverse transcription polymerase chain reaction (RT-PCR). Plasminogen activator inhibitor 1 (PAI-1) and thrombomodulin (TM) levels will be examined using enzyme-linked immunosorbent assay. The clock SNPs (rs3840267, rs3749474, and rs1402963), and clif SNPs (rs62758860 and rs2289709) were analyzed in 116 patients with CAD and 95 healthy controls by sequence-specific primer-polymerase chain reaction. Data were analyzed by χ 2 analysis. The mRNA levels of pai-1 and tm was decreased in the clock or clif gene silenced groups, and their protein levels were accordingly decreased. The blood serum PAI-1 and TM levels were significantly lower in CAD patients than that in healthy control. There showed significant association between clock SNPs (rs3840267) and CAD. And there was no significant association between clock SNPs (rs3749474 and rs1402963), clif SNPs (rs62758860 and rs2289709) and CAD. The data support an association between clock/clif and CAD. The clock SNPs (rs3840267) is associated with CAD. The clock gene could influence the expressions of PAI-1and TM in both cell and mice, and the blood levels had differences of PAI-1 and TM between CAD human recruitments and health controls. The process of PAI-1/TM influencing CAD may be under control by clock and clif gene.
机译:Clock是一个完善的核心生物钟基因,clif是一个新发现的生物钟基因,它们不仅维持细胞的生物钟节奏,而且还调节某些有机功能。这项研究的目的是确定时钟和/或clif基因的遗传变异(单核苷酸多态性-SNP)是否与冠心病(CAD)相关。我们沉默了细胞和小鼠中的时钟和clif基因。使用逆转录聚合酶链反应(RT-PCR)检测小鼠Clock,Clif,pai-1和tm的mRNA水平。纤溶酶原激活物抑制剂1(PAI-1)和血栓调节蛋白(TM)的水平将通过酶联免疫吸附试验进行检测。通过序列特异性引物-聚合酶链反应分析了116例CAD患者和95个健康对照中的时钟SNP(rs3840267,rs3749474和rs1402963)和clif SNP(rs62758860和rs2289709)。通过χ2分析来分析数据。在时钟或clif基因沉默组中,pai-1和tm的mRNA水平降低,其蛋白质水平也相应降低。 CAD患者的血清PAI-1和TM水平显着低于健康对照者。时钟SNP(rs3840267)和CAD之间显示出显着的关联。时钟SNP(rs3749474和rs1402963),clif SNP(rs62758860和rs2289709)与CAD之间没有显着关联。数据支持时钟/爬升与CAD之间的关联。时钟SNP(rs3840267)与CAD相关联。 Clock基因可能影响细胞和小鼠中PAI-1和TM的表达,并且在CAD人员招募和健康对照之间的血液水平存在PAI-1和TM的差异。 PAI-1 / TM影响CAD的过程可能受时钟和clif基因控制。

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