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首页> 外文期刊>BMC Genomics >Multiphasic analysis of whole exome sequencing data identifies a novel mutation of ACTG1 in a nonsyndromic hearing loss family
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Multiphasic analysis of whole exome sequencing data identifies a novel mutation of ACTG1 in a nonsyndromic hearing loss family

机译:整个外显子组测序数据的多相分析确定了非综合征性听力损失家族中ACTG1的新型突变

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Background The genetic heterogeneity of sensorineural hearing loss is a major hurdle to the efficient discovery of disease-causing genes. We designed a multiphasic analysis of copy number variation (CNV), linkage, and single nucleotide variation (SNV) of whole exome sequencing (WES) data for the efficient discovery of mutations causing nonsyndromic hearing loss (NSHL). Results From WES data, we identified five distinct CNV loci from a NSHL family, but they were not co-segregated among patients. Linkage analysis based on SNVs identified six candidate loci (logarithm of odds [LOD] >1.5). We selected 15 SNVs that co-segregated with NSHL in the family, which were located in six linkage candidate loci. Finally, the novel variant p.M305T in ACTG1 (DFNA20/26) was selected as a disease-causing variant. Conclusions Here, we present a multiphasic CNV, linkage, and SNV analysis of WES data for the identification of a candidate mutation causing NSHL. Our stepwise, multiphasic approach enabled us to expedite the discovery of disease-causing variants from a large number of patient variants.
机译:背景技术感音神经性听力损失的遗传异质性是有效发现致病基因的主要障碍。我们设计了完整外显子组测序(WES)数据的拷贝数变异(CNV),连锁和单核苷酸变异(SNV)的多相分析,以有效发现引起非综合征性听力损失(NSHL)的突变。结果从WES数据中,我们从NSHL家族中鉴定出五个不同的CNV基因座,但它们并未在患者中共隔离。基于SNV的连锁分析确定了六个候选基因座(几率对数[LOD]> 1.5)。我们选择了与NSHL家族共分离的15个SNV,它们位于六个连锁候选基因座中。最后,选择了ACTG1(DFNA20 / 26)中的新型变体p.M305T作为致病变体。结论在这里,我们介绍了WES数据的多相CNV,连锁和SNV分析,以鉴定引起NSHL的候选突变。我们的逐步,多阶段方法使我们能够加快从大量患者变异中发现引起疾病的变异。

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