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Grandparental genotyping enhances exome variant interpretation

机译:祖父基因分型增强了极端的变异解释

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Trio exome sequencing is a powerful tool in the molecular investigation of monogenic disorders and provides an incremental diagnostic yield over proband-only sequencing, mainly due to the rapid identification of de novo disease-causing variants. However, heterozygous variants inherited from unaffected parents may be inadvertently dismissed, although multiple explanations are available for such scenarios including mosaicism in the parent, incomplete penetrance, imprinting, or skewed X-inactivation. We report three probands, in which a pathogenic or likely pathogenic variant was identified upon exome sequencing, yet was inherited from an unaffected parent. Segregation of the variants (in NOTCH1, PHF6, and SOX10) in the grandparent generation revealed that the variant was de novo in each case. Additionally, one proband had skewed X-inactivation. We discuss the possible genetic mechanism in each case, and urge caution in data interpretation of exome sequencing data. We illustrate the utility of expanding segregation studies to the grandparent generation and demonstrate the impact on exome interpretation strategies, by showing that objective genotype data can overcome subjective parental report of lack of symptoms.
机译:Trio Exome测序是一项强大的工具,可在单体疾病调查中进行分子调查,并通过纯粹的诊断产量提供唯一的副词测序,主要是由于De Novo疾病导致变体的快速鉴定。然而,从未受到影响的父母继承的杂合变体可能被意外地解雇,尽管在包括父母中的镶嵌,不完全穿透,印迹或偏斜X灭活中的这种情况可以提供多种解释。我们报告了三个证据,其中鉴定了在外壳测序时鉴定了致病或可能的致病变体,但仍来自未受影响的父母。在祖父母中的变体(在Notch1,PHF6和SOX10)中的分离揭示了各种情况下的变种。此外,一个证据具有偏斜的X-inactivation。我们在每种情况下讨论可能的遗传机制,并促请在exome测序数据的数据解释中进行警告。我们通过表明客观基因型数据可以克服缺乏症状的主观父母报告,向祖父母发给祖父母生成并展示对末端解释策略的影响的效用。

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