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用于群体中单核苷酸分析的微孔板阵列对角线凝胶电泳(MADGE)、CpG聚合酶链反应(CpG-PCR)和时间热梯度-MADGE(熔解-MADGE)。

Microplate array diagonal gel electrophoresis (MADGE), CpG-PCR and temporal thermal ramp-MADGE (Melt-MADGE) for single nucleotide analyses in populations.

作者信息

Day I N, O'Dell S D, Spanakis E, Weavind G P

机构信息

Wessex Human Genetics Institute, Southampton University Hospitals NHS Trust, UK.

出版信息

Genet Anal. 1999 Feb;14(5-6):197-204. doi: 10.1016/s1050-3862(98)00027-8.

Abstract

Important requirements for molecular genetic epidemiological studies are economy, sample parallelism, convenience of setup and accessibility, goals inadequately met by existent approaches. We invented microplate array diagonal gel electrophoresis (MADGE) to gain simultaneously the advantages of simple setup, 96-well microplate compatibility, horizontal electrophoresis, and the resolution of polyacrylamide. At essentially no equipment cost (one simple plastic gel former), 10-100-fold savings on time for sample coding, liquid transfers, and data documentation, in addition to volume reductions and gel re-use, can be achieved. MADGE is compatible with ARMS, restriction analysis and other pattern analyses. CpG-PCR is a general PCR approach to CpG sites (10-20% of all human single base variation): both primers have 3' T, and are abutted to the CpG, forcing a TaqI restriction site if the CpG is intact. Typically, a 52 bp PCR product is then cut in half. CpG-PCR also illustrates that PAGE-MADGE readily permits analysis of 'ultrashort' PCRs. Melt-MADGE employs real-time-variable-temperature electrophoresis to examine duplex mobility during melting, achieving DGGE-like de novo, mutation scanning, but with the conveniences of arbitrary programmability, MADGE compatibility and short run time. This suite of methods enhances our capability to type or scan thousands of samples simultaneously, by 10-100-fold.

摘要

分子遗传流行病学研究的重要要求包括经济性、样本平行性、设置便利性和可及性,而现有方法无法充分满足这些目标。我们发明了微孔板阵列对角线凝胶电泳(MADGE),以同时获得设置简单、与96孔微孔板兼容、水平电泳以及聚丙烯酰胺分辨率等优点。基本上无需设备成本(一个简单的塑料凝胶成型器),除了减少体积和凝胶再利用外,还可在样本编码、液体转移和数据记录方面节省10到100倍的时间。MADGE与扩增阻滞突变系统(ARMS)、限制性分析和其他模式分析兼容。CpG-PCR是一种针对CpG位点的通用PCR方法(占所有人类单碱基变异的10%-20%):两条引物的3'端都有T,并且与CpG相邻,如果CpG完整,则会形成一个TaqI限制性位点。通常,一个52bp的PCR产物会被切成两半。CpG-PCR还表明,PAGE-MADGE很容易对“超短”PCR进行分析。熔解-MADGE采用实时可变温度电泳来检查熔解过程中的双链迁移率,实现类似于变性梯度凝胶电泳(DGGE)的从头突变扫描,但具有任意可编程性、与MADGE兼容和运行时间短等便利之处。这一套方法将我们同时对数千个样本进行分型或扫描的能力提高了10到100倍。

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