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Multiple Heat Pulses during PCR Extension Enabling Amplification of GC-Rich Sequences and Reducing Amplification Bias

机译:PCR延伸过程中的多个热脉冲使富含GC的序列扩增并减少了扩增偏差

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摘要

PCR amplification over GC-rich and/or long repetitive sequences is challenging because of thermo-stable structures resulting from incomplete denaturation, reannealing, and self-annealing of target sequences. These structures block the DNA polymerase during the extension step, leading to formation of incomplete extension products and favoring amplification of nonspecific products rather than specific ones. We have introduced multiple heat pulses in the extension step of a PCR cycling protocol to temporarily destabilize such blocking structures, in order to enhance DNA polymerase extension over GC-rich sequences. With this novel type of protocol, we were able to amplify all expansions of CGG repeats in five Fragile X cell lines, as well as extremely GC-rich nonrepetitive segments of the GNAQ and GP1BB genes. The longest Fragile X expansion contained 940 CGG repeats, corresponding to about 2.8 kilo bases of 100percent GC content. For the GNAQ and GP1BB genes, different length PCR products in the range of 700 bases to 2 kilobases could be amplified without addition of cosolvents. As this technique improves the balance of amplification efficiencies between GC-rich target sequences of different length, we were able to amplify all of the allelic expansions even in the presence of the unexpanded allele.
机译:由于目标序列的不完全变性,再退火和自退火导致热稳定的结构,因此在富含GC的和/或较长的重复序列上进行PCR扩增具有挑战性。这些结构在延伸步骤中阻断了DNA聚合酶,导致形成不完整的延伸产物,并有利于扩增非特异性产物而不是特异性产物。我们在PCR循环方案的延伸步骤中引入了多个热脉冲,以暂时破坏此类阻断结构的稳定性,以增强DNA聚合酶在富含GC的序列上的延伸。通过这种新颖的协议,我们能够扩增5个脆弱X细胞系中CGG重复序列的所有扩展,以及GNAQ和GP1BB基因的极其富含GC的非重复片段。最长的脆性X扩展片段包含940个CGG重复序列,相当于100%GC含量的约2.8千克碱基。对于GNAQ和GP1BB基因,可以在不添加助溶剂的情况下扩增700碱基至2千碱基范围的不同长度的PCR产物。由于此技术改善了不同长度的富含GC的靶序列之间扩增效率的平衡,因此即使存在未扩增的等位基因,我们也能够扩增所有等位基因的扩增。

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