Re-analysis of Next-generation Sequencing Data in Patients with Hypertrophic Cardiomyopathy: Contribution of Spliceogenic MYBPC3 Variants in an Italian Cohort.

IF 4 2区 医学 Q1 MEDICAL LABORATORY TECHNOLOGY
Silvia Caroselli, Marco Fabiani, Caterina Micolonghi, Camilla Savio, Giacomo Tini, Beatrice Musumeci, Erika Pagannone, Aldo Germani, Fabio Libi, Vincenzo Visco, Antonio Pizzuti, Camillo Autore, Simona Petrucci, Speranza Rubattu, Maria Piane
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引用次数: 0

Abstract

Hypertrophic cardiomyopathy (HCM) is a genetic cardiac muscle disease characterized by clinical and genetic heterogeneity. Genetic testing can reveal the presence of disease-causing variants in genes encoding sarcomere proteins. However, it yields inconclusive or negative results in 40-60% of HCM cases, owing to, among other causes, technical limitations such as the inability to detect pathogenic intronic variants. Therefore, we aimed to increase the diagnostic yield of molecular analysis for HCM by improving the in-silico detection of intronic variants in MYBPC3 that may escape detection by algorithms normally used with tagged diagnostic panels. We included 142 HCM probands with negative results in Illumina TruSight Cardio panel analysis, including exonic regions of 174 cardiomyopathy genes. Raw data were re-analyzed using existing bioinformatics tools. The spliceogenic variant c.1224-80G>A was detected in three patients (2.1%), leading us to reconsider their molecular diagnosis. These patients showed late onset and mild symptoms, although no peculiar phenotypic characteristics were shared. Collectively, rare spliceogenic MYBPC3 variants may play a role in causing HCM, and their systematic detection should be performed to provide more comprehensive solutions in genetic testing using multigenic panels.

重新分析肥厚型心肌病患者的新一代测序数据:意大利队列中剪接生成的 MYBPC3 变异的贡献
肥厚性心肌病(HCM)是一种遗传性心肌疾病,其特点是临床和遗传异质性。基因检测可发现编码肌节蛋白的基因存在致病变异。然而,由于无法检测致病性内含子变异等技术限制,40%-60% 的 HCM 病例无法得出结论或结果为阴性。因此,我们的目标是通过改进对 MYBPC3 内含子变异的内部检测,提高 HCM 分子分析的诊断率。我们纳入了在 Illumina TruSight Cardio 面板分析中结果为阴性的 142 例 HCM 患者,包括 174 个心肌病基因的外显子区域。我们使用现有的生物信息学工具重新分析了原始数据。在三名患者(2.1%)中检测到剪接源变异 c.1224-80G>A,这让我们重新考虑了他们的分子诊断。这些患者起病较晚,症状轻微,但没有共同的特殊表型特征。总之,罕见的剪接源性 MYBPC3 变异可能是导致 HCM 的原因之一,因此应该对其进行系统检测,以便在使用多基因检测板进行基因检测时提供更全面的解决方案。
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来源期刊
Annals of Laboratory Medicine
Annals of Laboratory Medicine MEDICAL LABORATORY TECHNOLOGY-
CiteScore
8.30
自引率
12.20%
发文量
100
审稿时长
6-12 weeks
期刊介绍: Annals of Laboratory Medicine is the official journal of Korean Society for Laboratory Medicine. The journal title has been recently changed from the Korean Journal of Laboratory Medicine (ISSN, 1598-6535) from the January issue of 2012. The JCR 2017 Impact factor of Ann Lab Med was 1.916.
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