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首页> 外文期刊>BMC Medical Genomics >Whole genome sequencing of one complex pedigree illustrates challenges with genomic medicine
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Whole genome sequencing of one complex pedigree illustrates challenges with genomic medicine

机译:一个复杂谱系的全基因组测序说明了基因组医学的挑战

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Background Human Phenotype Ontology (HPO) has risen as a useful tool for precision medicine by providing a standardized vocabulary of phenotypic abnormalities to describe presentations of human pathologies; however, there have been relatively few reports combining whole genome sequencing (WGS) and HPO, especially in the context of structural variants. Methods We illustrate an integrative analysis of WGS and HPO using an extended pedigree, which involves Prader–Willi Syndrome (PWS), hereditary hemochromatosis (HH), and dysautonomia-like symptoms. A comprehensive WGS pipeline was used to ensure reliable detection of genomic variants. Beyond variant filtering, we pursued phenotypic prioritization of candidate genes using Phenolyzer. Results Regarding PWS, WGS confirmed a 5.5?Mb de novo deletion of the parental allele at 15q11.2 to 15q13.1. Phenolyzer successfully returned the diagnosis of PWS, and pinpointed clinically relevant genes in the deletion. Further, Phenolyzer revealed how each of the genes is linked with the phenotypes represented by HPO terms. For HH, WGS identified a known disease variant (p.C282Y) in HFE of an affected female. Analysis of HPO terms alone fails to provide a correct diagnosis, but Phenolyzer successfully revealed the phenotype-genotype relationship using a disease-centric approach. Finally, Phenolyzer also revealed the complexity behind dysautonomia-like symptoms, and seven variants that might be associated with the phenotypes were identified by manual filtering based on a dominant inheritance model. Conclusions The integration of WGS and HPO can inform comprehensive molecular diagnosis for patients, eliminate false positives and reveal novel insights into undiagnosed diseases. Due to extreme heterogeneity and insufficient knowledge of human diseases, it is also important that phenotypic and genomic data are standardized and shared simultaneously.
机译:背景技术人类表型本体论(HPO)已成为一种精密医学的有用工具,它通过提供标准的表型异常词汇来描述人类病理学表现;但是,很少有报道结合使用全基因组测序(WGS)和HPO,特别是在结构变异的情况下。方法我们使用扩展的血统书说明了WGS和HPO的综合分析,该谱系涉及Prader-Willi综合征(PWS),遗传性血色素沉着病(HH)和自主神经异常样症状。使用了全面的WGS管道来确保可靠检测基因组变体。除了变体过滤之外,我们使用Phenolyzer进行候选基因的表型优先化。结果关于PWS,WGS确认在15q11.2至15q13.1处有5.5?Mb从头删除亲本等位基因。 Phenolyzer成功地返回了PWS的诊断,并指出了缺失中的临床相关基因。此外,Phenolyzer揭示了每个基因如何与HPO术语所代表的表型联系在一起。对于HH,WGS在患病女性的HFE中鉴定出一种已知的疾病变异(p.C282Y)。仅对HPO术语的分析不能提供正确的诊断,但是Phenolyzer使用以疾病为中心的方法成功揭示了表型与基因型的关系。最后,Phenolyzer还揭示了自主神经样样症状背后的复杂性,并根据显性遗传模型通过手动过滤识别了可能与表型有关的七个变异。结论WGS和HPO的整合可以为患者提供全面的分子诊断信息,消除假阳性,并揭示出对未诊断疾病的新颖见解。由于极端的异质性和对人类疾病的了解不足,将表型和基因组数据标准化并同时共享也很重要。

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