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SMN基因剂量分析中的异源双链体形成

Heteroduplex formation in SMN gene dosage analysis.

作者信息

Ogino S, Leonard D G, Rennert H, Gao S, Wilson R B

机构信息

Department of Pathology and Laboratory Medicine, University of Pennsylvania Medical Center, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Mol Diagn. 2001 Nov;3(4):150-7. doi: 10.1016/S1525-1578(10)60666-6.

Abstract

Most spinal muscular atrophy patients lack both copies of SMN1 exon 7 and most carriers have only one copy of SMN1 exon 7. We investigated the effect of SMN1/SMN2 heteroduplex formation on SMN gene dosage analysis, which is an assay to determine copy number of SMN1 exon 7 that utilizes multiplex quantitative polymerase chain reaction (PCR) with DraI digestion to differentiate SMN1 from SMN2. Heteroduplex formation in PCR is a well-described phenomenon. In addition to demonstrating the presence of heteroduplexes by sequence analysis of purified SMN1 bands, we compared the SMN1 signals in various genotype groups (total n = 260) to those in a group lacking SMN2 (n = 13), and we estimated the relative amounts of SMN1/SMN2 heteroduplexes. The SMN1 signal increased as SMN2 copy number increased despite a constant SMN1 copy number, although not all pairwise comparisons showed a statistically significant difference in the SMN1 signal. In conclusion, SMN1/SMN2 heteroduplexes form in SMN gene dosage analysis, falsely increasing the SMN1 signal. External controls for SMN gene dosage analysis should be chosen carefully with regard to SMN2 copy number. The effect of heteroduplex formation should be considered when performing quantitative multiplex PCR.

摘要

大多数脊髓性肌萎缩症患者缺失SMN1外显子7的两个拷贝,而大多数携带者仅有一个SMN1外显子7的拷贝。我们研究了SMN1/SMN2异源双链体形成对SMN基因剂量分析的影响,这是一种利用多重定量聚合酶链反应(PCR)并经DraI酶切来区分SMN1和SMN2,以确定SMN1外显子7拷贝数的检测方法。PCR中异源双链体形成是一种已被充分描述的现象。除了通过对纯化的SMN1条带进行序列分析来证明异源双链体的存在外,我们还比较了不同基因型组(共260例)中的SMN1信号与缺乏SMN2的组(13例)中的信号,并估计了SMN1/SMN2异源双链体的相对量。尽管SMN1拷贝数恒定,但随着SMN2拷贝数增加,SMN1信号增强,不过并非所有的两两比较在SMN1信号上都显示出统计学上的显著差异。总之,在SMN基因剂量分析中会形成SMN1/SMN2异源双链体,错误地增加了SMN1信号。对于SMN基因剂量分析的外部对照,应根据SMN2拷贝数仔细选择。在进行定量多重PCR时应考虑异源双链体形成的影响。

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引用本文的文献

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Neurogenetics. 2007 Nov;8(4):271-8. doi: 10.1007/s10048-007-0093-1. Epub 2007 Jul 24.
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