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首页> 外文期刊>Human Molecular Genetics >Genomic dissection of 43 serum urate-associated loci provides multiple insights into molecular mechanisms of urate control
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Genomic dissection of 43 serum urate-associated loci provides multiple insights into molecular mechanisms of urate control

机译:43个血清尿酸盐相关基因座的基因组解剖提供了对尿液控制的分子机制的多洞察

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摘要

High serum urate is a prerequisite for gout and associated with metabolic disease. Genome-wide association studies (GWAS) have reported dozens of loci associated with serum urate control; however, there has been little progress in understanding the molecular basis of the associated loci. Here, we employed trans-ancestral meta-analysis using data from European and East Asian populations to identify 10 new loci for serum urate levels. Genome-wide colocalization with cis-expression quantitative trait loci (eQTL) identified a further five new candidate loci. By cis- and trans-eQTL colocalization analysis, we identified 34 and 20 genes, respectively, where the causal eQTL variant has a high likelihood that it is shared with the serum urate-associated locus. One new locus identified was SLC22A9 that encodes organic anion transporter 7 (OAT7). We demonstrate that OAT7 is a very weak urate-butyrate exchanger. Newly implicated genes identified in the eQTL analysis include those encoding proteins that make up the dystrophin complex, a scaffold for signaling proteins and transporters at the cell membrane; MLXIP that, with the previously identified MLXIPL, is a transcription factor that may regulate serum urate via the pentose-phosphate pathway and MRPS7 and IDH2 that encode proteins necessary for mitochondrial function. Functional fine mapping identified six loci (RREB1, INHBC, HLF, UBE2Q2, SFMBT1 and HNF4G) with colocalized eQTL containing putative causal SNPs. This systematic analysis of serum urate GWAS loci identified candidate causal genes at 24 loci and a network of previously unidentified genes likely involved in control of serum urate levels, further illuminating the molecular mechanisms of urate control.
机译:高血清尿酸盐是痛风的先决条件,并与代谢疾病有关。全基因组关联研究(GWAS)报告了数十个与血清尿酸盐控制相关的位点;然而,在了解相关基因座的分子基础方面几乎没有进展。在这里,我们使用来自欧洲和东亚人群的数据进行跨祖先荟萃分析,以确定血清尿酸水平的10个新位点。与顺式表达数量性状基因座(eQTL)的全基因组共定位进一步确定了五个新的候选基因座。通过顺式和反式eQTL共定位分析,我们分别鉴定了34个和20个基因,其中因果eQTL变体很可能与血清尿酸盐相关位点共享。一个新的位点是SLC22A9,编码有机阴离子转运蛋白7(OAT7)。我们证明OAT7是一种非常弱的尿酸-丁酸酯交换剂。eQTL分析中新发现的相关基因包括编码构成肌营养不良蛋白复合体的蛋白质的基因,肌营养不良蛋白复合体是细胞膜上信号蛋白和转运蛋白的支架;MLXIP与之前确定的MLXIPL一样,是一种转录因子,可通过磷酸戊糖途径和编码线粒体功能所需蛋白质的MRPS7和IDH2调节血清尿酸盐。功能精细定位鉴定了6个位点(RREB1、INHBC、HLF、UBE2Q2、SFMBT1和HNF4G),它们与包含假定的因果SNP的共定位eQTL。通过对血清尿酸盐GWAS基因座的系统分析,在24个基因座上确定了候选的致病基因,以及一个可能参与血清尿酸盐水平控制的先前未确定的基因网络,进一步阐明了尿酸盐控制的分子机制。

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  • 来源
    《Human Molecular Genetics 》 |2020年第6期| 共21页
  • 作者单位

    Univ Otago Sch Biomed Sci Dept Biochem Dunedin New Zealand;

    Univ Otago Sch Biomed Sci Dept Biochem Dunedin New Zealand;

    Osaka Univ Dept Stat Genet Grad Sch Med Osaka Japan;

    Natl Def Med Coll Dept Integrat Physiol &

    Bionano Med Tokorozawa Saitama Japan;

    Natl Def Med Coll Dept Integrat Physiol &

    Bionano Med Tokorozawa Saitama Japan;

    Shanghai Jiao Tong Univ Bio X Inst Key Lab Genet Dev &

    Neuropsychiar Disorders Minist Educ;

    Qingdao Univ Dept Endocrinol &

    Metab Affiliated Hosp Qingdao Peoples R China;

    Harvard Med Sch Brigham &

    Womens Hosp Renal Div Boston MA 02115 USA;

    Harvard Med Sch Brigham &

    Womens Hosp Renal Div Boston MA 02115 USA;

    Icahn Inst Genom &

    Multiscale Biol Dept Genet &

    Genom Sci New York NY USA;

    Univ Otago Sch Biomed Sci Dept Biochem Dunedin New Zealand;

    Univ Otago Sch Biomed Sci Dept Biochem Dunedin New Zealand;

    Univ Otago Sch Biomed Sci Dept Biochem Dunedin New Zealand;

    Univ Otago Otago Med Sch Dept Pathol Dunedin New Zealand;

    Harvard Med Sch Massachusetts Gen Hosp Div Rheumatol Allergy &

    Immunol Boston MA 02115 USA;

    Univ Auckland Liggins Inst Auckland New Zealand;

    Univ Auckland Liggins Inst Auckland New Zealand;

    Icahn Inst Genom &

    Multiscale Biol Dept Genet &

    Genom Sci New York NY USA;

    Univ Otago Sch Biomed Sci Dept Biochem Dunedin New Zealand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学 ;
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