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TIMP3 and TIMP1 are risk genes for bicuspid aortic valve and aortopathy in Turner syndrome

机译:TIMP3和TIMP1是Turner综合征双主动脉瓣和主动脉病变的风险基因

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摘要

Turner syndrome is caused by complete or partial loss of the second sex chromosome, occurring in ~1 in 2,000 female births. There is a greatly increased incidence of aortopathy of unknown etiology, including bicuspid aortic valve (BAV), thoracic aortic aneurysms, aortic dissection and rupture. We performed whole exome sequencing on 188 Turner syndrome participants from the National Registry of Genetically Triggered Thoracic Aortic Aneurysms and Cardiovascular Related Conditions (GenTAC). A gene-based burden test, the optimal sequence kernel association test (SKAT-O), was used to evaluate the data with BAV and aortic dimension z-scores as covariates. Genes on chromosome Xp were analyzed for the potential to contribute to aortopathy when hemizygous. Exome analysis revealed that TIMP3 was associated with indices of aortopathy at exome-wide significance (p = 2.27 x 10−7), which was replicated in a separate cohort. The analysis of Xp genes revealed that TIMP1, which is a functionally redundant paralogue of TIMP3, was hemizygous in >50% of our discovery cohort and that having only one copy of TIMP1 increased the odds of having aortopathy (OR = 9.76, 95% CI = 1.91–178.80, p = 0.029). The combinatorial effect of a single copy of TIMP1 and TIMP3 risk alleles further increased the risk for aortopathy (OR = 12.86, 95% CI = 2.57–99.39, p = 0.004). The products of genes encoding tissue inhibitors of matrix metalloproteinases (TIMPs) are involved in development of the aortic valve and protect tissue integrity of the aorta. We propose that the combination of X chromosome TIMP1 hemizygosity and variants of its autosomal paralogue TIMP3, significantly increases the risk of aortopathy in Turner syndrome.
机译:特纳综合症是由第二性染色体的全部或部分丢失导致的,发生于2,000名女性中约有1名。病因不明的主动脉病(包括双尖瓣主动脉瓣(BAV),胸主动脉瘤,主动脉夹层和破裂)的发生率大大增加。我们对来自遗传触发的胸主动脉瘤和心血管相关疾病(GenTAC)国家注册局的188个Turner综合征参与者进行了完整的外显子组测序。使用基于基因的负担测试,即最佳序列核关联测试(SKAT-O),以BAV和主动脉维度z得分作为协变量评估数据。分析了Xp染色体上的基因在半合子时促成主动脉病变的潜力。外显子组分析显示,TIMP3在整个外显子组意义上与主动脉病变指数相关(p = 2.27 x 10 -7 ),并在一个单独的队列中复制。对Xp基因的分析显示,TIMP1是TIMP3的功能冗余旁系同源物,在我们发现队列的50%以上是半合子的,只有TIMP1的一个拷贝增加了发生主动脉病变的几率(OR = 9.76,95%CI = 1.91–178.80,p = 0.029)。单一拷贝TIMP1和TIMP3风险等位基因的组合作用进一步增加了发生主动脉病变的风险(OR = 12.86,95%CI = 2.57–99.39,p = 0.004)。编码基质金属蛋白酶(TIMPs)组织抑制剂的基因产物参与主动脉瓣的形成并保护主动脉的组织完整性。我们建议X染色体TIMP1半合子及其常染色体旁系同源TIMP3的变体的组合,大大增加了特纳综合征中主动脉病变的风险。

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