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Rapid design of denaturing gradient-based two-dimensional electrophoretic gene mutational scanning tests.

机译:基于变性梯度的二维电泳基因突变扫描测试的快速设计。

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摘要

With the current rapid pace at which human disease genes are identified there is a need for practical, cost-efficient genetic screening tests. Two-dimensional electrophoretic separation of PCR-amplified gene fragments on the basis of size and base pair sequence, in non-denaturing and denaturing gradient polyacrylamide gels respectively, provides a rapid parallel approach to gene mutational scanning. Accuracy of the denaturing gradient gel electrophoresis (DGGE) component of this system strongly depends on the design of the PCR primers and the melting characteristics of the fragments they encompass. We have developed a fully automated generally applicable procedure to generate optimal two-dimensional test designs at a minimum amount of time and effort. Designs were generated for the RB1 , TP53 , MLH1 and BRCA1 genes that can be readily implemented in research and clinical laboratories as low cost genetic screening tests.
机译:随着目前人类疾病基因的快速鉴定,需要实用,经济高效的基因筛选测试。分别基于大小和碱基对序列,分别在非变性和变性梯度聚丙烯酰胺凝胶中对PCR扩增的基因片段进行二维电泳分离,为基因突变扫描提供了一种快速的并行方法。该系统的变性梯度凝胶电泳(DGGE)组件的准确性在很大程度上取决于PCR引物的设计及其所包含片段的解链特性。我们已经开发了一种全自动通用的程序,可以在最少的时间和精力下生成最佳的二维测试设计。产生了针对RB1,TP53,MLH1和BRCA1基因的设计,这些基因可以很容易地在研究和临床实验室中实施,作为低成本的基因筛选测试。

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