首页> 外文期刊>Human Molecular Genetics >A haplotype spanning two genes, ELN and LIMK1, decreases their transcripts and confers susceptibility to intracranial aneurysms.
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A haplotype spanning two genes, ELN and LIMK1, decreases their transcripts and confers susceptibility to intracranial aneurysms.

机译:跨越两个基因ELN和LIMK1的单倍型减少了它们的转录本,并赋予了颅内动脉瘤敏感性。

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摘要

The rupture of an intracranial aneurysm (IA) results in subarachnoid hemorrhage, a catastrophic neurological condition with high morbidity and mortality. Following-up on our previous genome-wide linkage study in Japanese population, we extensively analyzed a 4.6 Mb linkage region around D7S2472 on 7q11 by genotyping 168 single nucleotide polymorphisms (SNPs). SNP association and window scan haplotype-based association studies revealed a susceptibility locus for IA on a single LD block covering the 3'-untranslated region (3'-UTR) of ELN and the entire region of LIMK1. An association study with 404 IA patients and 458 non-IA controls revealed that the ELN 3'-UTR G(+659)C SNP has the strongest association to IA (P=0.000002) and constitutes a tag-SNP for an at-risk haplotype, which contains two functional SNPs, the ELN 3'-UTR (+502) A insertion and the LIMK1 promoter C(-187)T SNP. These allelic and haplotype-based associations were confirmed in a Korean population. Ex vivo and in vitro analyses demonstratethat the functional impact of both SNPs is the decrease of transcript levels, either through accelerated ELN mRNA degradation or through decreased LIMK1 promoter activity. Elastin and LIMK1 protein are involved in the same actin depolymerization signaling pathway; therefore, these lines of evidence suggest a combined effect of the SNPs in the at-risk haplotype possibly by weakening the vascular wall and promoting the development of IA.
机译:颅内动脉瘤(IA)的破裂导致蛛网膜下腔出血,这是一种具有高发病率和死亡率的灾难性神经系统疾病。在我们之前的日本人群全基因组连锁研究之后,我们通过对168个单核苷酸多态性(SNP)进行基因分型,广泛分析了7q11上D7S2472附近的4.6 Mb连锁区域。 SNP关联和基于窗口扫描基于单倍型的关联研究显示,在覆盖ELN的3'-非翻译区(3'-UTR)和LIMK1整个区域的单个LD区块上,IA的易感性基因座。一项针对404名IA患者和458名非IA对照的关联研究表明,ELN 3'-UTR G(+659)C SNP与IA的关联最强(P = 0.000002),并且构成了处于危险中的tag-SNP单倍型,它包含两个功能性SNP,即ELN 3'-UTR(+502)A插入片段和LIMK1启动子C(-187)T SNP。这些等位基因和基于单倍型的关联已在韩国人群中得到证实。体外和体外分析表明,两种SNP的功能影响都是通过加速ELN mRNA降解或通过降低LIMK1启动子活性来降低转录水平。弹性蛋白和LIMK1蛋白参与相同的肌动蛋白解聚信号传导途径。因此,这些证据表明,SNPs可能通过削弱血管壁和促进IA的发展而在高危单体型中发挥综合作用。

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