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Simultaneous Genotyping of GSTT1 and GSTM1 Null Polymorphisms by Melting Curve Analysis in Presence of SYBR Green I

机译:在存在SYBR Green I时通过熔解曲线分析同时进行GSTT1和GSTM1无效多态性的基因分型

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摘要

Due to their ability to metabolize xenobiotics, glutathione S-transferases (GSTs) play an important role in cellular protection. GST family members μ (GSTM1) and θ (GSTT1) exhibit a common polymorphism that results in the complete deletion of the gene (null allele). Homozygous deletions, which result in the absence of the enzyme, are considered a risk factor for several diseases, including cancer. We report a simple, low cost, and high throughput assay for the simultaneous analysis of the GSTM1 and GSTT1 null polymorphisms in a single step. The assay is based on multiplex real-time PCR in the presence of SYBR Green I and genotype discrimination by melting curve analysis in a LightCycler. We have genotyped 792 samples to compare this new approach with conventional PCR followed by gel electrophoresis. Comparison of the methods gave a good agreement, with κ values of 0.88 for GSTM1 and 0.64 for GSTT1. Reanalysis of discrepant samples indicated that absence of amplification of the larger GSTT1 fragment by conventional PCR accounted for most of the discrepancies. Moreover, the improved amplification efficiency of the real-time PCR results in a significant reduction of missing values. Due to its simplicity and low cost, this assay is well suited for the rapid analysis of GST-null genotypes in studies that involve large number of samples.
机译:谷胱甘肽S-转移酶(GST)由于具有代谢异源生物的能力,因此在细胞保护中起着重要作用。 GST家族成员μ(GSTM1)和θ(GSTT1)表现出共同的多态性,导致基因完全缺失(无效等位基因)。导致缺乏酶的纯合子缺失被认为是包括癌症在内的几种疾病的危险因素。我们报告了一个简单,低成本和高通量的测定方法,可在单个步骤中同时分析GSTM1和GSTT1无效多态性。该测定法基于在SYBR Green I存在下的多重实时PCR和通过LightCycler中的熔解曲线分析对基因型进行区分。我们已对792个样品进行了基因分型,以将这种新方法与常规PCR和随后的凝胶电泳进行比较。方法的比较给出了很好的一致性,GSTM1的κ值为0.88,GSTT1的κ值为0.64。对差异样品的重新分析表明,常规PCR不扩增较大的GSTT1片段是造成大多数差异的原因。此外,实时PCR扩增效率的提高可显着降低缺失值。由于其简单性和低成本,该测定法非常适合在涉及大量样品的研究中快速分析GST无效基因型。

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