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Modified allele-specific PCR improves HER2 Ile655Val detection by reducing genotyping errors

机译:修饰的等位基因特异性PCR通过减少基因分型错误来改善HER2 Ile655Val检测

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Background A reliable method to detect gene polymorphisms must be established to eliminate genotyping errors due to false PCR amplification. In the previous study, we have developed AS-PCR ( Allele Specific-Polymerase Chain Reaction ) to detect HER2 Ile655Val gene polymorphism with good specificity and sensitivity, yet it produces some errors. This study is aimed to eliminate the source of genotyping errors mainly by betaine treatment and PCR program modification. Methods Genotyping errors produced by AS-PCR was qualitatively and quantitatively evaluated using two genomic DNA that each contained AA genotype and GG genotype of HER2 Gene. Betaine treatment or PCR program modification was tested to eliminate the occurrence of genotyping errors during AS-PCR amplification. Results The types of genotyping errors exhibited by HER2 Ile655Val AS-PCR are diverse, ranging from LDO ( Locus Drop Out ), preferential amplification to ADO ( Allele Drop Out ). The rate of genotyping errors was from 10% to 50% depending on the amount and ratio of DNA template and the annealing temperature of PCR. In the mixed DNA template model, the betaine treatment has shown to reduce ADO only in preferentially amplified GG genotype amplicon. Alternatively, reducing the template of the heterozygous DNA by half ( -0.5?ng of DNA template) for such case has effectively recovered the AS-PCR from ADO. Furthermore, increasing the denaturation temperature to 96?°C with an annealing time of 40?s at the first 10?cycles of AS-PCR has succeeded in eliminating severe preferential amplification of AA genotype amplicon by preventing the DNA template with GG genotype from forming into a G-quadruplex structure. The guideline offered in this study has been successfully applied for clinical samples of breast cancer that show preferential amplification. Conclusion Betaine and the modifying AS-PCR program can reduce significantly genotyping errors making AS-PCR for HER2 Ile655Val detection more reliable to be used as a molecular tool for genotyping purpose.
机译:背景技术必须建立一种检测基因多态性的可靠方法,以消除由于错误的PCR扩增引起的基因分型错误。在先前的研究中,我们开发了AS-PCR(等位基因特异性聚合酶链反应)来检测HER2 Ile655Val基因多态性,具有良好的特异性和敏感性,但会产生一些错误。这项研究的目的是主要通过甜菜碱处理和PCR程序修改来消除基因分型错误的根源。方法使用两种分别含有HER2基因的AA基因型和GG基因型的基因组DNA,定性和定量评估AS-PCR产生的基因分型错误。测试了甜菜碱处理或PCR程序修改,以消除AS-PCR扩增过程中基因分型错误的发生。结果HER2 Ile655Val AS-PCR表现出的基因分型错误类型多种多样,从LDO(基因座缺失),优先扩增到ADO(等位基因缺失)。基因分型错误的比率为10%至5​​0%,具体取决于DNA模板的数量和比例以及PCR的退火温度。在混合DNA模板模型中,甜菜碱处理仅在优先扩增的GG基因型扩增子中显示出降低ADO的作用。另外,在这种情况下,将杂合DNA的模板减少一半(DNA模板的-0.5ng)可以有效地从ADO中回收AS-PCR。此外,通过在AS-PCR的前10个循环中以40?s的退火时间将变性温度提高到96°C,在前10个循环中,通过阻止形成具有GG基因型的DNA模板,成功消除了AA基因型扩增子的严重优先扩增。变成G四元结构这项研究中提供的指南已成功应用于显示优先扩增的乳腺癌临床样品。结论甜菜碱和改良的AS-PCR程序可以显着减少基因分型错误,这使得用于HER2 Ile655Val检测的AS-PCR更加可靠,可以用作进行基因分型的分子工具。

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