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CoDE-seq, an augmented whole-exome sequencing, enables the accurate detection of CNVs and mutations in Mendelian obesity and intellectual disability

机译:Code-SEQ,增强全exome测序,可以准确地检测孟德尔肥胖症和智力残疾的CNV和突变

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摘要

Objective: The molecular diagnosis of extreme forms of obesity, in which accurate detection of both copy number variations (CNVs) and point mutations, is crucial for an optimal care of the patients and genetic counseling for their families. Whole-exome sequencing (WES) has benefited considerably this molecular diagnosis, but its poor ability to detect CNVs remains a major limitation. We aimed to develop a method (CoDE-seq) enabling the accurate detection of both CNVs and point mutations in one step. Methods: CoDE-seq is based on an augmented WES method, using probes distributed uniformly throughout the genome. CoDE-seq was validated in 40 patients for whom chromosomal DNA microarray was available. CNVs and mutations were assessed in 82 children/young adults with suspected Mendelian obesity and/or intellectual disability and in their parents when available (ntotal = 145). Results: CoDE-seq not only detected all of the 97 CNVs identified by chromosomal DNA microarrays but also found 84 additional CNVs, due to a better resolution. When compared to CoDE-seq and chromosomal DNA microarrays, WES failed to detect 37% and 14% of CNVs, respectively. In the 82 patients, a likely molecular diagnosis was achieved in >30% of the patients. Half of the genetic diagnoses were explained by CNVs while the other half by mutations. Conclusions: CoDE-seq has proven cost-efficient and highly effective as it avoids the sequential genetic screening approaches currently used in clinical practice for the accurate detection of CNVs and point mutations. Keywords: Augmented whole-exome sequencing, Copy number variation, Intellectual disability, Molecular diagnosis, Next-generation sequencing, Obesity
机译:目的:极端形式的肥胖者,其中两个拷贝数变异(CNV)和点突变的检测准确,是患者最佳的护理和遗传咨询为他们的家庭至关重要的分子诊断。全外显子组测序(WES)受益明显这种分子诊断,但其基因拷贝数变异检测能力差仍然是一个主要的限制。我们的目的是开发一种方法(代码序列)同时启用拷贝数变异和点突变的检测准确一步到位。方法:代码-SEQ是基于增强WES方法,使用在整个基因组均匀分布的探针。代码序列中40例为他们的染色体DNA微阵列是可被验证。拷贝数变异和突变的82名儿童评估/青壮年怀疑孟德尔肥胖和/或智力残疾和他们的父母时可用(n总= 145)。结果:代码-SEQ不仅检测到的所有通过染色体DNA微阵列鉴定的97组的CNV的同时也发现84组附加的CNV,由于更好的分辨率。当与码-SEQ和染色体DNA微阵列,WES未能检测到37%和拷贝数变异的14%,分别。在82例患者中,有可能分子诊断的患者> 30%来实现的。遗传诊断的一半是由拷贝数变异,而另一半由基因突变解释。结论:因为它避免了连续的遗传筛选方法目前在临床上用于拷贝数变异和点突变的检测准确代码序列已被证明成本效益和高效。关键词:增强全基因组测序,拷贝数变异,智力残疾,分子诊断,新一代测序,肥胖

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