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Novel common and rare genetic determinants of paraoxonase activity: FTO SERPINA12 and ITGAL

机译:新的常见和罕见的对氧磷酶活性的遗传决定因素:FTOSERPINA12和ITGAL

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摘要

HDL-associated paraoxonase 1 (PON1) activity is associated with cardiovascular and other human diseases. As the role of genetic variants outside of the PON gene cluster on PON1 activity is unknown, we sought to identify common and rare variants in such loci. We typed 33,057 variants on the CVD chip in 1,362 subjects to test for their effects on adjusted-PON1 activity. Three novel genes (FTO, ITGAL, and SERPINA12) and the PON gene cluster had SNPs associated with PON1 arylesterase (AREase) activity. These loci were carried forward for rare-variant analysis using Exome chip genotypes in an overlapping subset of 1,051 subjects using sequence kernel association testing. PON1 (P = 2.24 × 10−4), PON3 (P = 0.022), FTO (P = 0.019), and SERPINA12 (P = 0.039) had both common and rare variants associated with PON1 AREase. ITGAL variants were associated with PON1 activity when using weighted sequence kernel association testing (SKAT) analysis (P = 2.63 × 10−3). When adjusting for the initial common variants, SERPINA12 became marginally significant (P = 0.09), whereas all other findings remained significant (P < 0.05), suggesting independent rare-variant effects. We present novel findings that common and rare variants in FTO, SERPINA12, and ITGAL predict PON1 activity. These results further link PON1 to diabetes and inflammation and may inform the role of HDL in human disease.
机译:HDL相关的对氧磷酶1(PON1)活性与心血管疾病和其他人类疾病有关。由于未知PON基因簇以外的遗传变异对PON1活性的作用,我们试图在此类基因座中鉴定出常见和罕见的变异。我们在CVD芯片上的1,362位受试者中键入了33,057个变体,以测试它们对调整后的PON1活性的影响。三种新基因(FTO,ITGAL和SERPINA12)和PON基因簇具有与PON1芳基酯酶(AREase)活性相关的SNP。使用序列核关联测试,在1,051名受试者的重叠子集中,使用Exome芯片基因型将这些基因座进行了稀有变异分析。 PON1(P = 2.24×10 −4 ),PON3(P = 0.022),FTO(P = 0.019)和SERPINA12(P = 0.039)具有与PON1 AREase相关的常见和罕见变体。使用加权序列内核关联测试(SKAT)分析时,ITGAL变体与PON1活性相关(P = 2.63×10 -3 )。调整初始常见变体后,SERPINA12的边际显着性( P = 0.09),而所有其他发现仍然显着( P <0.05),表明具有独立的稀有变异作用。我们提出了新颖的发现,即 FTO SERPINA12 ITGAL 中的常见和罕见变体可预测PON1活性。这些结果进一步将PON1与糖尿病和炎症联系起来,并可能提示HDL在人类疾病中的作用。

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