首页> 美国卫生研究院文献>Frontiers in Pediatrics >Genetic Predisposition for Immune System Hormone and Metabolic Dysfunction in Myalgic Encephalomyelitis/Chronic Fatigue Syndrome: A Pilot Study
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Genetic Predisposition for Immune System Hormone and Metabolic Dysfunction in Myalgic Encephalomyelitis/Chronic Fatigue Syndrome: A Pilot Study

机译:遗传性易感性脑脊髓炎/慢性疲劳综合征的免疫系统激素和代谢功能异常的遗传易感性:一项初步研究

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摘要

>Introduction: Myalgic Encephalomyelitis/ Chronic Fatigue Syndrome (ME/CFS) is a multifactorial illness of unknown etiology with considerable social and economic impact. To investigate a putative genetic predisposition to ME/CFS we conducted genome-wide single-nucleotide polymorphism (SNP) analysis to identify possible variants.>Methods: 383 ME/CFS participants underwent DNA testing using the commercial company 23andMe. The deidentified genetic data was then filtered to include only non-synonymous and nonsense SNPs from exons and microRNAs, and SNPs close to splice sites. The frequencies of each SNP were calculated within our cohort and compared to frequencies from the Kaviar reference database. Functional annotation of pathway sets containing SNP genes with high frequency in ME/CFS was performed using over-representation analysis via ConsensusPathDB. Furthermore, these SNPs were also scored using the Combined Annotation Dependent Depletion (CADD) algorithm to gauge their deleteriousness.>Results: 5693 SNPs were found to have at least 10% frequency in at least one cohort (ME/CFS or reference) and at least two-fold absolute difference for ME/CFS. Functional analysis identified the majority of SNPs as related to immune system, hormone, metabolic, and extracellular matrix organization. CADD scoring identified 517 SNPs in these pathways that are among the 10% most deleteriousness substitutions to the human genome.
机译:>简介:肌病性脊髓脊髓炎/慢性疲劳综合症(ME / CFS)是一种病因不明的多因素疾病,对社会和经济产生重大影响。为了研究ME / CFS的假定遗传易感性,我们进行了全基因组单核苷酸多态性(SNP)分析,以鉴定可能的变异。>方法: 383名ME / CFS参与者使用商业公司23andMe进行了DNA测试。 。然后将已识别的遗传数据过滤,以仅包括来自外显子和microRNA的非同义和无义SNP,以及靠近剪接位点的SNP。在我们的队列中计算了每个SNP的频率,并将其与Kaviar参考数据库中的频率进行比较。使用通过ConsensusPathDB进行的超表达分析,对ME / CFS中包含高频率SNP基因的途径集进行功能注释。此外,还使用组合注释依赖耗竭(CADD)算法对这些SNP进行了评分,以评估其有害性。>结果:在至少一个队列中,有5693个SNP的频率至少为10%(ME / CFS或参考)和至少两倍的ME / CFS绝对差。功能分析确定了大多数SNP与免疫系统,激素,代谢和细胞外基质组织有关。 CADD评分在这些途径中鉴定出517个SNP,属于人类基因组中10%最有害的取代。

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