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Meta-analysis of genome-wide association studies in five cohorts reveals common variants in RBFOX1, a regulator of tissue-specific splicing, associated with refractive error

机译:对五个队列的全基因组关联研究的荟萃分析揭示了RBFOX1的常见变异,RBFOX1是组织特异性剪接的调节剂,与屈光不正相关

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摘要

Visual refractive errors (REs) are complex genetic traits with a largely unknown etiology. To date, genomewide association studies (GWASs) of moderate size have identified several novel risk markers for RE, measured here as mean spherical equivalent (MSE). We performed a GWAS using a total of 7280 samples from five cohorts: the Age-Related Eye Disease Study (AREDS); the KORA study ('Cooperative Health Research in the Region of Augsburg'); the Framingham Eye Study (FES); the Ogliastra Genetic Park-Talana (OGPTalana) Study and the Multiethnic Study of Atherosclerosis (MESA). Genotyping was performed on Illumina and Affymetrix platforms with additional markers imputed to the HapMap II reference panel. We identified a new genome-wide significant locus on chromosome 16 (rs10500355, P = 3.9 × 10-9) in a combined discovery and replication set (26 953 samples). This single nucleotide polymorphism (SNP) is located within the RBFOX1 gene which is a neuron-specific splicing factor regulating a wide range of alternative splicing events implicated in neuronal development and maturation, including transcription factors, other splicing factors and synaptic proteins.
机译:视觉屈光不正(RE)是复杂的遗传特征,病因很大程度上未知。迄今为止,中等规模的全基因组关联研究(GWAS)已经确定了RE的几种新的危险标记,此处以平均球当量(MSE)来衡量。我们使用来自五个队列的总共7280个样本进行了GWAS:年龄相关性眼病研究(AREDS); KORA研究(“奥格斯堡地区合作医疗研究”);弗雷明汉眼科研究(FES); Ogliastra遗传公园-塔拉纳(OGPTalana)研究和动脉粥样硬化的多民族研究(MESA)。基因分型是在Illumina和Affymetrix平台上进行的,附加的标记物被推导到HapMap II参考面板上。我们在联合发现和复制组(26 953个样本)中,在16号染色体上确定了一个新的全基因组重要位点(rs10500355,P = 3.9×10-9)。该单核苷酸多态性(SNP)位于RBFOX1基因内,该基因是神经元特异性剪接因子,可调节与神经元发育和成熟有关的多种可变剪接事件,包括转录因子,其他剪接因子和突触蛋白。

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