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A Novel DES L115F Mutation Identified by Whole Exome Sequencing is Associated with Inherited Cardiac Conduction Disease

机译:通过全外显子组测序鉴定的新型DES L115F突变与遗传性心脏传导疾病相关。

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摘要

Inherited cardiac conduction disease (CCD) is rare; it is caused by a large number of mutations in genes encoding cardiac ion channels and cytoskeletal proteins. Recently, whole-exome sequencing has been successfully used to identify causal mutations for rare monogenic Mendelian diseases. We used trio-based whole-exome sequencing to study a Chinese family with multiple family members affected by CCD, and identified a heterozygous missense mutation (c.343C>T, p.Leu115Phe) in the desmin gene as the most likely candidate causal mutation for the development of CCD in this family. The mutation is novel and is predicted to affect the conformation of the coiled-coil rod domain of DES according to structural model prediction. Its pathogenicity in desmin protein aggregation was further confirmed by expressing the mutation, both in a cellular model and a CRISPR/CAS9 knock-in mouse model. In conclusion, our results suggest that whole-exome sequencing is a feasible approach to identify candidate genes underlying inherited conduction diseases.
机译:遗传性心脏传导疾病(CC​​D)很少见;它是由编码心脏离子通道和细胞骨架蛋白的基因中的大量突变引起的。最近,全外显子测序已成功用于鉴定罕见的单基因孟德尔疾病的因果突变。我们使用基于三重的全外显子组测序研究了一个有多个受CCD影响的家庭成员的中国家庭,并发现desmin基因中的杂合错义突变(c.343C> T,p.Leu115Phe)是最可能的候选因果突变在这个家庭中发展CCD。该突变是新颖的,并且根据结构模型预测,预计该突变会影响DES的卷曲螺旋棒结构域的构象。通过在细胞模型和CRISPR / CAS9敲入小鼠模型中表达突变,进一步证实了其在结蛋白蛋白质聚集中的致病性。总之,我们的结果表明,全外显子测序是鉴定潜在遗传性传导疾病候选基因的可行方法。

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