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首页> 外文期刊>Journal of clinical laboratory analysis. >A resolved discrepancy between multiplex PCR PCR and multiplex ligation‐dependent probe amplification by targeted next‐generation sequencing discloses a novel partial exonic deletion in the Duchenne muscular dystrophy gene
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A resolved discrepancy between multiplex PCR PCR and multiplex ligation‐dependent probe amplification by targeted next‐generation sequencing discloses a novel partial exonic deletion in the Duchenne muscular dystrophy gene

机译:通过靶向的下一代测序通过靶向下一代测序的多重PCR PCR和多重连接依赖性探针扩增的分辨差异公开了Duchenne肌营养不良基因中的新型偏见缺失

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摘要

Background The genetic diagnosis of Duchenne muscular dystrophy ( DMD ) has been complicated by the large size of the gene and its heterogeneous mutational spectrum. Multiplex PCR and multiplex ligation‐dependent probe amplification ( MLPA ) are two well‐established mutation screening methods. Here, we applied targeted next‐generation sequencing ( NGS ) to clarify discrepant results between multiplex PCR and MLPA in a Chinese patient with DMD . Methods MLPA was performed to confirm multiplex PCR results obtained previously. Targeted NGS was then used to analyze the full‐length DMD gene including introns. Results Multiplex PCR had previously identified an apparent deletion of exon 43 in the patient with DMD , but current MLPA indicated that exon 43 was present. Targeted NGS to clarify the genetic diagnosis identified a novel mutation, c.6241_c.6290?+?1109del1159ins AC , which caused partial deletion of exon 43. This mutation removed the annealing sequence of the exon 43 reverse primer in multiplex PCR but had no influence on the hybridization site of the MLPA probe. Therefore, the discrepancy between the two methods was caused by partial exonic deletion that escaped MLPA detection. Conclusion Targeted NGS disclosed a novel partial exonic deletion in the DMD gene as the cause of discrepancy between multiplex PCR and MLPA . Targeted NGS could be used to provide a more accurate genetic diagnosis of DMD , particularly in cases of partial exonic deletions, which will be of benefit in patient management and the identification of disease carriers.
机译:背景技术Duchenne肌肉营养不良(DMD)的遗传诊断因基因大小和其异质突变谱而异。多重PCR和多重连接依赖性探针扩增(MLPA)是两种良好的突变筛选方法。这里,我们应用了目标下一代测序(NGS),以阐明在具有DMD的中国患者中的多重PCR和MLPA之间的差异结果。方法进行MLPA以确认先前获得的多重PCR结果。然后用于分析包括内含子的全长DMD基因的靶向NG。结果多重PCR先前已经鉴定过DMD的患者中的外显性43的表观缺失,但目前的MLPA表明存在外显子43。靶向的NGS阐明遗传诊断鉴定了一种新的突变,C.6241_C.6290?+α1109del1159蛋白,其引起部分缺失的外显子43.该突变除去了外显子43反向引物的反向PCR的退火序列,但没有影响在MLPA探针的杂交位点。因此,两种方法之间的差异是由偏离MLPA检测的部分外偏振缺失引起的。结论靶向NGS在DMD基因中公开了一种新的偏偏振缺失作为多重PCR和MLPA之间的差异的原因。靶向的NGS可用于提供更准确的DMD遗传诊断,特别是在部分外偏振缺失的情况下,这将是患者管理和疾病携带者的鉴定。

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