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首页> 外文期刊>PLoS Genetics >Integration of Genome-Wide SNP Data and Gene-Expression Profiles Reveals Six Novel Loci and Regulatory Mechanisms for Amino Acids and Acylcarnitines in Whole Blood
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Integration of Genome-Wide SNP Data and Gene-Expression Profiles Reveals Six Novel Loci and Regulatory Mechanisms for Amino Acids and Acylcarnitines in Whole Blood

机译:全基因组SNP数据和基因表达谱的整合揭示了全血中氨基酸和酰基肉碱的六个新基因座和调控机制

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摘要

Profiling amino acids and acylcarnitines in whole blood spots is a powerful tool in the laboratory diagnosis of several inborn errors of metabolism. Emerging data suggests that altered blood levels of amino acids and acylcarnitines are also associated with common metabolic diseases in adults. Thus, the identification of common genetic determinants for blood metabolites might shed light on pathways contributing to human physiology and common diseases. We applied a targeted mass-spectrometry-based method to analyze whole blood concentrations of 96 amino acids, acylcarnitines and pathway associated metabolite ratios in a Central European cohort of 2,107 adults and performed genome-wide association (GWA) to identify genetic modifiers of metabolite concentrations. We discovered and replicated six novel loci associated with blood levels of total acylcarnitine, arginine (both on chromosome 6; rs12210538, rs17657775), propionylcarnitine (chromosome 10; rs12779637), 2-hydroxyisovalerylcarnitine (chromosome 21; rs1571700), stearoylcarnitine (chromosome 1; rs3811444), and aspartic acid traits (chromosome 8; rs750472). Based on an integrative analysis of expression quantitative trait loci in blood mononuclear cells and correlations between gene expressions and metabolite levels, we provide evidence for putative causative genes: SLC22A16 for total acylcarnitines, ARG1 for arginine, HLCS for 2-hydroxyisovalerylcarnitine, JAM3 for stearoylcarnitine via a trans-effect at chromosome 1, and PPP1R16A for aspartic acid traits. Further, we report replication and provide additional functional evidence for ten loci that have previously been published for metabolites measured in plasma, serum or urine.In conclusion, our integrative analysis of SNP, gene-expression and metabolite data points to novel genetic factors that may be involved in the regulation of human metabolism. At several loci, we provide evidence for metabolite regulation via gene-expression and observed overlaps with GWAS loci for common diseases. These results form a strong rationale for subsequent functional and disease-related studies.
机译:在全血斑中分析氨基酸和酰基肉碱是实验室诊断某些先天性代谢错误的有力工具。新兴数据表明,血液中氨基酸和酰基肉碱水平的变化也与成年人的常见代谢性疾病有关。因此,鉴定血液代谢产物的常见遗传决定因素可能有助于阐明有助于人类生理和常见疾病的途径。我们应用了基于质谱的靶向方法,分析了中欧2107名成年人中96种氨基酸,酰基肉碱的全血浓度和途径相关的代谢物比率,并进行了全基因组关联(GWA)来确定代谢物浓度的遗传修饰因子。我们发现并复制了六个与血液中总酰基肉碱,精氨酸(均位于6号染色体上; rs12210538,rs17657775),丙酰基肉碱(染色体10; rs12779637),2-羟基异戊基肉碱(染色体21; rs1571700),硬脂酰基肉碱(染色体)相关的新基因座rs3811444)和天冬氨酸特性(染色体8; rs750472)。基于血液单核细胞中表达定量特征位点的综合分析以及基因表达与代谢产物水平之间的相关性,我们为推定的致病基因提供了证据:总酰基肉碱的SLC22A16,精氨酸的ARG1、2-羟基异戊基肉碱的HLCS,硬脂酰基肉碱的JAM3 1号染色体的反式效应和PPP1R16A的天冬氨酸性状。此外,我们报告了复制并为先前已发表的用于血浆,血清或尿液中测量的代谢物的十个基因座提供了功能性证​​据。总之,我们对SNP,基因表达和代谢物数据的综合分析指出了可能导致新的遗传因素的因素。参与人体新陈代谢的调节。在几个基因座处,我们提供了通过基因表达进行代谢物调节的证据,并观察到与GWAS基因座在常见疾病上的重叠。这些结果为以后的功能和疾病相关研究提供了有力的依据。

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