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首页> 外文期刊>Human Molecular Genetics >An eQTL mapping approach reveals that rare variants in the SEMA5A regulatory network impact autism risk
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An eQTL mapping approach reveals that rare variants in the SEMA5A regulatory network impact autism risk

机译:eQTL映射方法表明,SEMA5A监管网络中的罕见变体会影响自闭症风险

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To date, genome-wide single nucleotide polymorphism (SNP) and copy number variant (CNV) association studies of autism spectrum disorders (ASDs) have led to promising signals but not to easily interpretable or translatable results. Our own genome-wide association study (GWAS) showed significant association to an intergenic SNP near Semaphorin 5A (SEMA5A) and provided evidence for reduced expression of the same gene. In a novel GWAS follow-up approach, we map an expression regulatory pathway for a GWAS candidate gene, SEMA5A, in silico by using population expression and genotype data sets. We find that the SEMA5A regulatory network significantly overlaps rare autism-specific CNVs. The SEMA5A regulatory network includes previous autism candidate genes and regions, including MACROD2, A2BP1, MCPH1, MAST4, CDH8, CADM1, FOXP1, AUTS2, MBD5, 7q21, 20p, USH2A, KIRREL3, DBF4B and RELN, among others. Our results provide: (i) a novel data-derived network implicated in autism, (ii) evidence that the same pathway seeded by an initial SNP association shows association with rare genetic variation in ASDs, (iii) a potential mechanism of action and interpretation for the previous autism candidate genes and genetic variants that fall in this network, and (iv) a novel approach that can be applied to other candidate genes for complex genetic disorders. We take a step towards better understanding of the significance of SEMA5A pathways in autism that can guide interpretation of many other genetic results in ASDs.
机译:迄今为止,自闭症谱系障碍(ASD)的全基因组单核苷酸多态性(SNP)和拷贝数变异(CNV)关联研究已产生了有希望的信号,但并未轻易解释或翻译。我们自己的全基因组关联研究(GWAS)显示与Semaphorin 5A(SEMA5A)附近的一个基因间SNP有显着关联,并提供了降低同一基因表达的证据。在一种新颖的GWAS跟踪方法中,我们通过使用群体表达和基因型数据集来绘制GWAS候选基因SEMA5A在计算机上的表达调控途径。我们发现,SEMA5A监管网络与罕见的自闭症特异性CNV明显重叠。 SEMA5A调节网络包括以前的自闭症候选基因和区域,包括MACROD2,A2BP1,MCPH1,MAST4,CDH8,CADM1,FOXP1,AUTS2,MBD5、7q21、20p,USH2A,KIRREL3,DBF4B和RELN。我们的结果提供:(i)涉及自闭症的新型数据来源网络;(ii)最初的SNP关联所播种的同一途径表明与ASD中罕见的遗传变异相关;(iii)潜在的作用和解释机制(适用于以前属于该网络的自闭症候选基因和遗传变异),以及(iv)可以应用于复杂遗传疾病的其他候选基因的新方法。我们朝着更好地理解自闭症中SEMA5A途径的意义迈出了一步,这可以指导ASD中许多其他遗传结果的解释。

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