Gene prioritisation for enhancing molecular diagnosis in rare skeletal muscle disease cohort.

IF 3.5 2区 医学 Q2 GENETICS & HEREDITY
Victoria Lillback, Gaber Bergant, Maria Francesca Di Feo, Ivana Babić Bozović, Annalaura Torella, Mridul Johari, Aleš Maver, Katarina Pelin, Filippo M M Santorelli, Vincenzo Nigro, Peter Hackman, Borut Peterlin, Bjarne Udd, Marco Savarese
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Abstract

Background: Inherited rare skeletal muscle diseases cause muscle weakness and wasting of variable severity. Without a molecular diagnosis, patients often endure prolonged diagnostic journeys, leading to delays in appropriate management of the disease. This occurs in approximately 60% of patients with rare diseases.

Methods: To facilitate reanalysis of 278 unsolved patients, we used a gene prioritisation tool Exomiser, which standardises analysis by ranking causative variants based on phenotype relevance and variant pathogenicity. Before analysis, we benchmarked Exomiser for variant prioritisation with solved cases and for novel disease gene discovery with mock cases with variants in candidate disease genes. Additionally, we studied the significance of the specificity of the phenotype descriptions.

Results: In our study, Exomiser ranked genes in the top 10 correctly in 97.4% of controls with previously detected causative variants. Moreover, 57.1% of candidate genes in mock cases were similarly prioritised in the top 10. We also showed that three parental muscle disease human phenotype ontologies describing the patient phenotype performed as well as patient-specific ones, with a p value of 0.68 for difference in performance. The provided automation and standardisation of variant interpretation resulted in two novel diagnoses and in findings, either in known muscle disease genes or in novel candidate genes, which need further investigation.

Conclusions: Exomiser is recommended for initial and periodic reanalyses of exomes in unsolved patients with myopathy, as it benefits from literature updates and minimises effort. This approach could also extend to whole genome sequencing data, aiding the interpretation of variants beyond coding regions.

基因优先排序增强罕见骨骼肌疾病队列的分子诊断。
背景:遗传性罕见骨骼肌疾病引起不同程度的肌肉无力和消瘦。如果没有分子诊断,患者往往要忍受漫长的诊断旅程,从而导致疾病适当管理的延误。这种情况发生在大约60%的罕见病患者身上。方法:为了方便对278例未解决的患者进行再分析,我们使用了基因优先排序工具Exomiser,该工具根据表型相关性和变异致病性对致病变异进行排序,从而标准化分析。在分析之前,我们对Exomiser进行了基准测试,以确定已解决病例的变异优先级,并对具有候选疾病基因变异的模拟病例进行了新疾病基因发现。此外,我们还研究了表型描述特异性的意义。结果:在我们的研究中,在97.4%的先前检测到致病变异的对照中,Exomiser正确地将基因排在前10位。此外,在模拟案例中,57.1%的候选基因同样优先出现在前10名中。我们还发现,描述患者表型的三种亲代肌肉疾病人类表型本体和患者特异性本体表现一样好,表现差异的p值为0.68。变异解释的自动化和标准化导致了两种新的诊断和发现,无论是已知的肌肉疾病基因还是新的候选基因,都需要进一步的研究。结论:Exomiser被推荐用于未解决的肌病患者的初始和定期外显子组再分析,因为它受益于文献更新和最小化工作。这种方法也可以扩展到全基因组测序数据,帮助解释编码区域以外的变异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Medical Genetics
Journal of Medical Genetics 医学-遗传学
CiteScore
7.60
自引率
2.50%
发文量
92
审稿时长
4-8 weeks
期刊介绍: Journal of Medical Genetics is a leading international peer-reviewed journal covering original research in human genetics, including reviews of and opinion on the latest developments. Articles cover the molecular basis of human disease including germline cancer genetics, clinical manifestations of genetic disorders, applications of molecular genetics to medical practice and the systematic evaluation of such applications worldwide.
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