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基于等位基因特异性扩增的单核苷酸多态性基因分型引物设计——在器官移植药物基因组学中的应用

Primer design for SNP genotyping based on allele-specific amplification-Application to organ transplantation pharmacogenomics.

作者信息

Tortajada-Genaro Luis A, Puchades Rosa, Maquieira Ángel

机构信息

Instituto Inter-Universitario de Reconocimiento Molecular y Desarrollo Tecnológico (IDM) - Departamento de Química, Universitat Politècnica de València, Camino de Vera s/n, E46022, Valencia, Spain; Unidad Mixta UPV-La Fe, Nanomedicine and Sensors, Valencia, Spain.

Instituto Inter-Universitario de Reconocimiento Molecular y Desarrollo Tecnológico (IDM) - Departamento de Química, Universitat Politècnica de València, Camino de Vera s/n, E46022, Valencia, Spain; Unidad Mixta UPV-La Fe, Nanomedicine and Sensors, Valencia, Spain.

出版信息

J Pharm Biomed Anal. 2017 Mar 20;136:14-21. doi: 10.1016/j.jpba.2016.12.030. Epub 2016 Dec 29.

Abstract

Diagnostic methods based on single nucleotide polymorphism (SNP) biomarkers are essential for the real adoption of personalized medicine. Allele specific amplification in a homogeneous format or combined to microarray hybridization are powerful approaches for SNP genotyping. However, primers must be properly selected to minimize cross-reactivity, dimer formation and nonspecific hybridization. This study presents a design workflow diagram for the selection of required oligonucleotides for multiplex assays. Based on thermodynamic restrictions, the oligonucleotide sets are chosen for a specific amplification of wild- and mutant-type templates. Design constraints include the structural stability of primer-template duplexes, template-probe duplexes and self-annealing complexes or hairpins for each targeted gene. The performance of the design algorithm was evaluated for the simultaneous genotyping of three SNPs related to immunosuppressive drugs administered after solid organ transplantation. The assayed polymorphisms were rs1045642 (ABCB1 gene), rs1801133 (MTHFR gene) and rs776746 (CYP3A5 gene). Candidates were confirmed by discriminating homozygote and heterozygote populations using a fluorescence solution method and two colorimetric microarray methods on polycarbonate chips. The analysis of patient samples provided excellent genotyping results compared to those obtained by a reference method. The study demonstrates that the development of the allele-specific methods as pharmacogenetic tools can be simplified.

摘要

基于单核苷酸多态性(SNP)生物标志物的诊断方法对于个性化医疗的真正应用至关重要。均相形式的等位基因特异性扩增或与微阵列杂交相结合是SNP基因分型的强大方法。然而,必须正确选择引物以尽量减少交叉反应、二聚体形成和非特异性杂交。本研究提出了一个设计工作流程图,用于选择多重检测所需的寡核苷酸。基于热力学限制,选择寡核苷酸组以特异性扩增野生型和突变型模板。设计限制包括每个靶向基因的引物-模板双链体、模板-探针双链体以及自退火复合物或发夹结构的结构稳定性。对与实体器官移植后使用的免疫抑制药物相关的三个SNP进行同时基因分型,评估了设计算法的性能。检测的多态性为rs1045642(ABCB1基因)、rs1801133(MTHFR基因)和rs776746(CYP3A5基因)。使用荧光溶液法和聚碳酸酯芯片上的两种比色微阵列法区分纯合子和杂合子群体,对候选者进行了确认。与参考方法相比,患者样本分析提供了出色的基因分型结果。该研究表明,作为药物遗传学工具的等位基因特异性方法的开发可以简化。

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