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首页> 外文期刊>Human Molecular Genetics >A non-coding genetic variant maximally associated with serum urate levels is functionally linked to HNF4A-dependent PDZK1 expression
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A non-coding genetic variant maximally associated with serum urate levels is functionally linked to HNF4A-dependent PDZK1 expression

机译:具有最大与血清尿酸盐水平相关的非编码遗传变体在功能上与HNF4A依赖性PDZK1表达有关

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摘要

The precise molecular mechanisms by which urate-associated genetic variants affect urate levels are unknown. Here, we tested for functional linkage of the maximally associated genetic variant rs1967017 at the PDZK1 locus to elevated PDZK1 expression. We performed expression quantitative trait loci (eQTL) and likelihood analyses and gene expression assays. Zebrafish were used to evaluate tissue-specific gene expression. Luciferase assays in HEK293 and HepG2 cells measured the effect of rs1967017 on transcription amplitude. Probabilistic Annotation Integrator analysis revealed rs1967017 as most likely to be causal and rs1967017 was an eQTL for PDZK1 in the intestine. The region harboring rs1967017 was capable of directly driving green fluorescent protein expression in the kidney, liver and intestine of zebrafish embryos, consistent with a conserved ability to confer tissue-specific expression. Small interfering RNA depletion of HNF4A reduced endogenous PDZK1 expression in HepG2 cells. Luciferase assays showed that the T allele of rs1967017 gains enhancer activity relative to the urate-decreasing C allele, with T allele enhancer activity abrogated by HNF4A depletion. HNF4A physically binds the rs1967017 region, suggesting direct transcriptional regulation of PDZK1 by HNF4A. Computational prediction of increased motif strength, together with our functional assays, suggests that the urate-increasing T allele of rs1967017 strengthens a binding site for the transcription factor HNF4A. Our and other data predict that the urate-raising T allele of rs1967017 enhances HNF4A binding to the PDZK1 promoter, thereby increasing PDZK1 expression. As PDZK1 is a scaffold protein for many ion channel transporters, increased expression can be predicted to increase activity of urate transporters and alter excretion of urate.
机译:通过该尿酸相关遗传变异影响尿酸盐水平的精确分子机制是未知的。在这里,我们测试了在PDZK1轨迹到PDZK1表达升高的最大相关的遗传变异体rs1967017的功能性连接。我们进行表达数量性状基因座(eQTL)和似然分析和基因表达分析。斑马鱼被用来评估组织特异性基因表达。在HEK293和HepG2细胞萤光素酶测定法的rs1967017转录振幅的影响。概率注释集成分析显示rs1967017作为最有可能的因果和rs1967017在肠内PDZK1的eQTL。携带rs1967017的区域是能够在斑马鱼胚胎,具有保守的能力组织特异性胙表达一致的肾,肝和肠中直接驱动的绿色荧光蛋白的表达。 HNF4A的小干扰RNA耗尽在HepG2细胞中降低内源表达PDZK1。萤光素酶测定显示,rs1967017增益增强子活性相对于尿酸降低C等位基因T等位基因,与T等位基因增强子活性通过HNF4A耗尽废止。 HNF4A物理结合的rs1967017区域,这表明通过HNF4A PDZK1的直接转录调控。的增加的基序强度计算预测,用我们的功能测定法一起,表明rs1967017的尿酸增加T等位基因增强转录因子HNF4A的结合位点。我们和其他数据预测,rs1967017增强HNF4A的尿酸升高T等位基因结合PDZK1启动子,从而增加PDZK1表达。至于PDZK1是许多离子通道转运蛋白的支架蛋白,增加的表达可以预测,以增加尿酸盐转运和尿酸盐的改变排泄活性。

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