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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Structural factors determining DNA length limitations in conformation-sensitive mutation detection methods
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Structural factors determining DNA length limitations in conformation-sensitive mutation detection methods

机译:确定构象敏感突变检测方法中DNA长度限制的结构因素

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Numerous mutations and polymorphisms in human genes remain to be identified using reliable methods. Of the available mutation scanning methods those dependent on structural change-induced mobility shifts are highly effective. Their efficiency is, however, DNA length-sensitive and the reasons for that are poorly understood. In this study, we explain why scanning genes for mutations is less effective in longer DNA fragments, and reveal the factors which are behind this effect. We have performed a systematic analysis of the same sequence variants of exon 11 of the BRCA 1 gene in DNA fragments of three different lengths using the combined single-strand conformation polymorphism (SSCP) and heteroduplex analysis (DA) by capillary electrophoresis (CE). There are two major structural factors responsible for the reduced mutation detection rate in long amplicons. The first is increased contribution from other secondary structure modules and domains in longer fragments, which mask the structural change induced by the mutation. The second is higher frequency of single-nucleotide polymorphisms (SNPs) including common polymorphisms in longer fragments. This makes it necessary to distinguish the structural effect of the mutation from that of each polymorphic variant, which is often difficult to achieve. Taking these factors into account, an efficient scanning of genes for sequence variants by conformation-sensitive methods may be performed.
机译:人类基因中的许多突变和多态性仍有待使用可靠的方法进行鉴定。在可用的突变扫描方法中,那些依赖于结构变化引起的迁移率变化的方法非常有效。然而,它们的效率对DNA长度敏感,其原因尚不清楚。在这项研究中,我们解释了为什么扫描基因的突变在较长的DNA片段中效率较低,并揭示了造成这种影响的因素。我们使用毛细管电泳(CE)结合的单链构象多态性(SSCP)和异源双链分析(DA),对三种不同长度的DNA片段中BRCA 1基因外显子11的相同序列变异进行了系统分析。长扩增子的突变检测率降低有两个主要的结构因素。首先是更长片段中其他二级结构模块和结构域的贡献增加,这掩盖了由突变引起的结构变化。第二个是较高频率的单核苷酸多态性(SNP),包括较长片段中的常见多态性。这使得必须将突变的结构效果与每个多态变体的结构效果区分开,这通常很难实现。考虑到这些因素,可以通过构象敏感方法对基因进行有效的序列变异扫描。

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