肥厚性心肌病患者突变检测的高通量基因分型机器人辅助方法。

Barbara Bortot, Emmanouil Athanasakis, Francesca Brun, Diego Rizzotti, Luisa Mestroni, Gianfranco Sinagra, Giovanni Maria Severini
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引用次数: 18

摘要

肥厚性心肌病(HCM)是最常见的常染色体显性遗传性心肌疾病,也是年轻人(30岁以下)心脏性猝死的最常见原因,他们通常不知道自己的潜在疾病。遗传筛查现在被认为是HCM家族临床管理的基本工具。然而,HCM的高遗传异质性使得遗传筛查非常昂贵。在这里,我们提出了一种新的高通量基因分型方法,基于HCM 96孔测序板,通过自动化直接测序所需的几个过程,使用商业上可用的机器人系统和常规使用的仪器,分析8种最常见的HCM引起的肉瘤基因。为了评估机器人辅助方法的效率,我们分析了18例HCM患者及其亲属样本中8个肌体基因的整个编码序列和侧翼内含子序列,发现了9个不同的突变,其中3个是新突变。聚合酶链反应的自动化、机器人辅助组装、聚合酶链反应产物的纯化和测序反应的组装,大大节省了时间、试剂成本,减少了人为错误,因此可以作为许多医学遗传实验室中HCM基因筛选中突变鉴定的主要策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-throughput genotyping robot-assisted method for mutation detection in patients with hypertrophic cardiomyopathy.

Hypertrophic cardiomyopathy (HCM) is the most frequent autosomal dominant genetic heart muscle disease and the most common cause of sudden cardiac death in young people (under 30 y of age), who are often unaware of their underlying condition. Genetic screening is now considered a fundamental tool for clinical management of HCM families. However, the high genetic heterogeneity of HCM makes genetic screening very expensive. Here, we propose a new high-throughput genotyping method based on a HCM 96-well sequencing plate for the analysis of 8 of the most frequent HCM-causing sarcomeric genes by automating several processes required for direct sequencing, using a commercially available robotic systems and routinely used instruments. To assess the efficiency of the robot-assisted method, we have analyzed the entire coding sequence and flanking intronic sequences of the 8 sarcomeric genes in samples from 18 patients affected by HCM and their relatives, which revealed 9 different mutations, 3 of which were novel. The automated, robot-assisted assembling of polymerase chain reaction, purification of polymerase chain reaction products, and assembly of sequencing reactions resulted in a substantial saving of time, reagent costs, and reduction of human errors, and can therefore be proposed as a primary strategy for mutation identification in HCM genetic screening in many medical genetic laboratories.

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来源期刊
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>12 weeks
期刊介绍: Diagnostic Molecular Pathology focuses on providing clinical and academic pathologists with coverage of the latest molecular technologies, timely reviews of established techniques, and papers on the applications of these methods to all aspects of surgical pathology and laboratory medicine. It publishes original, peer-reviewed contributions on molecular probes for diagnosis, such as tumor suppressor genes, oncogenes, the polymerase chain reaction (PCR), and in situ hybridization. Articles demonstrate how these highly sensitive techniques can be applied for more accurate diagnosis.
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