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首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Multiplex Genotyping of Cytochrome P450 Single-Nucleotide Polymorphisms by Use of MALDI-TOF Mass Spectrometry
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Multiplex Genotyping of Cytochrome P450 Single-Nucleotide Polymorphisms by Use of MALDI-TOF Mass Spectrometry

机译:利用MALDI-TOF质谱对细胞色素P450单核苷酸多态性进行多重基因分型

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Background: Polymorphisms in cytochrome P450 (CYP450) genes contribute to interindividual differences in the metabolism of xenobiotic chemicals, including the vast majority of drugs, and may lead to toxicity and adverse drug reactions. Studies on these polymorphisms in research and diagnostic settings typically involve large-scale genotyping and hence require high-throughput assays.Methods: We used the previously developed solid-phase capture–single-base extension (SPC-SBE) approach for concurrent analysis of 40 single-nucleotide polymorphisms (SNPs) of CYP2C9 and 50 SNPs of CYP2A13 , both genes belonging to the CYP450 family. Desired SNP-containing regions for each gene were amplified in a single-step multiplex PCR. We designed a library of primers to anneal immediately upstream of the selected SNPs and extended it with biotinylated terminators using PCR products as templates. Biotinylated extension products were isolated by affinity purification and analyzed with MALDI-TOF mass spectrometry to determine SNP genotypes.Results: We analyzed 11 samples for CYP2C9 and 14 samples for CYP2A13 with unambiguous detection of SNPs in all samples. Many samples showed a high occurrence of heterozygotes for both genes, with as many as 10 of 50 SNPs appearing as heterozygotes in 1 sample genotyped for CYP2A13 .Conclusions: The SPC-SBE method provides an efficient means for genotyping SNPs from the CYP450 family. This approach is suitable for automation and can be extended to other genotyping applications.
机译:背景:细胞色素P450(CYP450)基因的多态性导致异种化学物质(包括绝大多数药物)的代谢个体间差异,并可能导致毒性和药物不良反应。在研究和诊断环境中对这些多态性的研究通常涉及大规模的基因分型,因此需要进行高通量分析。方法:我们使用先前开发的固相捕获-单碱基扩展(SPC-SBE)方法同时分析了40种CYP2C9的单核苷酸多态性(SNPs)和CYP2A13的50个SNPs都属于CYP450家族。在单步多重PCR中扩增每个基因所需的含SNP的区域。我们设计了一个引物库,用于立即在选定SNP的上游退火,并使用PCR产物作为模板,使用生物素化的终止子对其进行扩展。通过亲和纯化分离生物素化的延伸产物,并用MALDI-TOF质谱分析以确定SNP基因型。结果:我们分析了11个样品中的CYP2C9和14个样品中的CYP2A13,所有样品中SNP的检测均明确。许多样品显示两个基因的杂合子发生率很高,在1个基因型为CYP2A13的样品中,多达50个SNP中的10个与杂合子一起出现。结论:SPC-SBE方法为CYP450家族的SNPs基因分型提供了一种有效的方法。这种方法适用于自动化,并且可以扩展到其他基因分型应用。

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