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Stuffer-free multiplex ligation-dependent probe amplification based on conformation-sensitive capillary electrophoresis: A novel technology for robust multiplex determination of copy number variation

机译:基于构象敏感型毛细管电泳的无填充多路连接依赖性探针扩增:一种可靠的多重检测拷贝数变异的新技术

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Developing diagnostic tools based on the application of known disease/phenotype-associated copy number variations (CNVs) requires the capacity to measure CNVs in a multiplex format with sufficient reliability and methodological simplicity. In this study, we developed a reliable and user-friendly multiplex CNV detection method, termed stuffer-free MLPA-CE-SSCP, that combines a variation of multiplex ligation-dependent probe amplification (MLPA) with CE-SSCP. In this variation, MLPA probes were designed without the conventionally required stuffer sequences. To separate the similar-sized stuffer-free MLPA products, we adopted CE-SSCP rather than length-dependent conventional CE analysis. An examination of the genomic DNA from five cell lines known to vary in X-chromosome copy number (1-5) revealed that copy number determinations using stuffer-free MLPA-CE-SSCP were more accurate than those of conventional MLPA, and the CV of the measured copy numbers was significantly lower. Applying our system to measure the CNVs on autosomes between two HapMap individuals, we found that all peaks for CNV targets showed the expected copy number changes. Taken together, our results indicate that this new strategy can overcome the limitations of conventional MLPA, which are mainly related to long probe length and difficulties of probe preparation. ? 2012 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:基于已知疾病/表型相关拷贝数变异(CNV)的应用开发诊断工具需要具有足够的可靠性和方法简便性的以多重格式测量CNV的能力。在这项研究中,我们开发了一种可靠且用户友好的多重CNV检测方法,称为无填充MLPA-CE-SSCP,该方法结合了多重连接依赖探针扩增(MLPA)和CE-SSCP的变化。在此变体中,设计的MLPA探针没有常规所需的填充序列。为了分离类似大小的无填充物的MLPA产品,我们采用了CE-SSCP,而不是依赖于长度的常规CE分析。对来自五个已知X染色体拷贝数有所不同(1-5)的细胞系的基因组DNA的检查显示,使用无填充物的MLPA-CE-SSCP进行的拷贝数测定比常规MLPA和CV更为准确所测拷贝数的百分比显着降低。应用我们的系统测量两个HapMap个体之间常染色体上的CNV,我们发现CNV目标的所有峰均显示了预期的拷贝数变化。综上所述,我们的结果表明,这种新策略可以克服常规MLPA的局限性,后者主要与探针长度长和探针制备困难有关。 ? 2012 WILEY-VCH Verlag GmbH&Co.KGaA,魏因海姆。

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