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首页> 外文期刊>Human Genetics >Whole-genome sequencing identifies complex contributions to genetic risk by variants in genes causing monogenic systemic lupus erythematosus
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Whole-genome sequencing identifies complex contributions to genetic risk by variants in genes causing monogenic systemic lupus erythematosus

机译:全基因组测序鉴定了通过导致单一的基因的变体对遗传风险的复杂贡献,导致单一的系统性狼疮红斑狼疮

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摘要

Systemic lupus erythematosus (SLE, OMIM 152700) is a systemic autoimmune disease with a complex etiology. The mode of inheritance of the genetic risk beyond familial SLE cases is currently unknown. Additionally, the contribution of heterozygous variants in genes known to cause monogenic SLE is not fully understood. Whole-genome sequencing of DNA samples from 71 Swedish patients with SLE and their healthy biological parents was performed to investigate the general genetic risk of SLE using known SLE GWAS risk loci identified using the ImmunoChip, variants in genes associated to monogenic SLE, and the mode of inheritance of SLE risk alleles in these families. A random forest model for predicting genetic risk for SLE showed that the SLE risk variants were mainly inherited from one of the parents. In the 71 patients, we detected a significant enrichment of ultra-rare (0.1%) missense and nonsense mutations in 22 genes known to cause monogenic forms of SLE. We identified one previously reported homozygous nonsense mutation in the C1QC (Complement C1q C Chain) gene, which explains the immunodeficiency and severe SLE phenotype of that patient. We also identified seven ultra-rare, coding heterozygous variants in five genes (C1S, DNASE1L3, DNASE1, IFIH1, and RNASEH2A) involved in monogenic SLE. Our findings indicate a complex contribution to the overall genetic risk of SLE by rare variants in genes associated with monogenic forms of SLE. The rare variants were inherited from the other parent than the one who passed on the more common risk variants leading to an increased genetic burden for SLE in the child. Higher frequency SLE risk variants are mostly passed from one of the parents to the offspring affected with SLE. In contrast, the other parent, in seven cases, contributed heterozygous rare variants in genes associated with monogenic forms of SLE, suggesting a larger impact of rare variants in SLE than hitherto reported.
机译:系统性红斑狼疮(SLE,OMIM 152700)是一种全身性自身免疫性疾病具有复杂的病因学。超越家族性SLE病例的遗传风险的遗传方式目前还不清楚。此外,杂合变体的已知会导致单基因SLE基因的贡献尚不完全清楚。进行71名瑞典SLE患者和他们的健康亲生父母的DNA样本的全基因组测序研究使用使用免疫芯片识别出的已知SLE GWAS风险基因座SLE的总体遗传风险,在相关联的单基因SLE基因变体和模式这些家庭中的SLE风险等位基因的遗传。用于预测SLE的遗传风险的随机森林模型表明,SLE风险变异主要来自父母一方遗传。在71名患者中,我们检测到的超罕见(0.1%)错义和无义突变在已知引起SLE的单基因形式22个基因一个显著富集。我们确定了一个先前报道C1QC(补体C1q进行链)的基因,这也解释了免疫缺陷和病人的严重SLE表型纯合子无义突变。我们还确定了七个超罕见,在参与单基因SLE五个基因(C 18,DNASE1L3,DNA酶,IFIH1和RNASEH2A)编码杂变种。我们的研究结果表明,以SLE的总体遗传风险度的罕见变异与SLE的单基因形式相关的基因复杂的贡献。在罕见的变异是从其他家长比上谁更常见的风险传递的孩子变体导致增加的遗传负担SLE的一个继承。更高频率的SLE风险变异大多是从父母患有系统性红斑狼疮的后代之一过去了。相比之下,另一位家长,7例,贡献与SLE的单基因形式相关的基因杂合子罕见的变异,这罕见的变异在SLE产生更大的影响比以往报道。

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  • 来源
    《Human Genetics》 |2019年第2期|共10页
  • 作者单位

    Uppsala Univ Dept Med Sci Mol Med &

    Sci Life Lab S-75123 Uppsala Sweden;

    Uppsala Univ Dept Med Sci Mol Med &

    Sci Life Lab S-75123 Uppsala Sweden;

    Uppsala Univ Dept Med Sci Rheumatol &

    Sci Life Lab S-75185 Uppsala Sweden;

    Uppsala Univ Dept Med Sci Rheumatol &

    Sci Life Lab S-75185 Uppsala Sweden;

    Karolinska Univ Hosp Karolinska Inst Dept Med Rheumatol Unit Rheumatol S-17177 Stockholm Sweden;

    Linkoping Univ Div Neuro &

    Inflammat Sci Dept Clin &

    Expt Med Rheumatol S-58183 Linkoping;

    Lund Univ Skane Univ Hosp Dept Clin Sci Rheumatol S-22242 Lund Sweden;

    Lund Univ Skane Univ Hosp Dept Clin Sci Rheumatol S-22242 Lund Sweden;

    Karolinska Univ Hosp Karolinska Inst Dept Med Rheumatol Unit Rheumatol S-17177 Stockholm Sweden;

    Karolinska Univ Hosp Karolinska Inst Dept Med Rheumatol Unit Rheumatol S-17177 Stockholm Sweden;

    Uppsala Univ Dept Med Sci Rheumatol &

    Sci Life Lab S-75185 Uppsala Sweden;

    Uppsala Univ Dept Med Sci Rheumatol &

    Sci Life Lab S-75185 Uppsala Sweden;

    Uppsala Univ Dept Med Sci Mol Med &

    Sci Life Lab S-75123 Uppsala Sweden;

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

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