首页> 外文期刊>Acta Neuropathologica Communications >MotorPlex provides accurate variant detection across large muscle genes both in single myopathic patients and in pools of DNA samples
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MotorPlex provides accurate variant detection across large muscle genes both in single myopathic patients and in pools of DNA samples

机译:MotorPlex可为单发肌病患者和DNA样本库中的大型肌肉基因提供准确的变异检测

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Mutations in ~100 genes cause muscle diseases with complex and often unexplained genotype/phenotype correlations. Next-generation sequencing studies identify a greater-than-expected number of genetic variations in the human genome. This suggests that existing clinical monogenic testing systematically miss very relevant information.We have created a core panel of genes that cause all known forms of nonsyndromic muscle disorders (MotorPlex). It comprises 93 loci , among which are the largest and most complex human genes, such as TTN , RYR1 , NEB and DMD . MotorPlex captures at least 99.2% of 2,544 exons with a very accurate and uniform coverage. This quality is highlighted by the discovery of 20-30% more variations in comparison with whole exome sequencing. The coverage homogeneity has also made feasible to apply a cost-effective pooled sequencing strategy while maintaining optimal sensitivity and specificity.We studied 177 unresolved cases of myopathies for which the best candidate genes were previously excluded. We have identified known pathogenic variants in 52 patients and potential causative ones in further 56 patients. We have also discovered 23 patients showing multiple true disease-associated variants suggesting complex inheritance. Moreover, we frequently detected other nonsynonymous variants of unknown significance in the largest muscle genes. Cost-effective combinatorial pools of DNA samples were similarly accurate (97-99%).MotorPlex is a very robust platform that overcomes for power, costs, speed, sensitivity and specificity the gene-by-gene strategy. The applicability of pooling makes this tool affordable for the screening of genetic variability of muscle genes also in a larger population. We consider that our strategy can have much broader applications.
机译:约100个基因中的突变会导致肌肉疾病,且具有复杂的基因型/表型相关性,而且往往无法解释。下一代测序研究确定了人类基因组中数量超过预期的遗传变异。这表明现有的临床单基因检测系统地错过了非常相关的信息。我们创建了一组核心基因,这些基因导致所有已知形式的非综合征性肌肉疾病(MotorPlex)。它包含93个基因座,其中是最大,最复杂的人类基因,例如TTN,RYR1,NEB和DMD。 MotorPlex可以准确准确地捕获2544个外显子中的至少99.2%。与整个外显子组测序相比,发现了20-30%的更多变异,突显了这种质量。覆盖均一性也使得在保持最佳敏感性和特异性的同时应用成本有效的合并测序策略变得可行。我们研究了177例未解决的肌病病例,该病例先前已排除了最佳候选基因。我们已经确定了52位患者的已知致病变异,以及另外56位患者的潜在致病变异。我们还发现了23名患者,这些患者显示出多种与疾病相关的真实变异,表明遗传复杂。此外,我们经常在最大的肌肉基因中检测到其他意义不明的非同义变体。具有成本效益的DNA样本组合池准确度相近(97-99%)。MotorPlex是一个非常强大的平台,可以克服基因逐基因策略在功耗,成本,速度,灵敏度和特异性方面的不足。合并的适用性使该工具可负担得起的筛查,也可用于筛查更多人群中肌肉基因的遗传变异性。我们认为我们的策略可以有更广泛的应用。

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