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毛细管电泳作为一种分析序列诱导的异常迁移DNA片段的技术。

Capillary electrophoresis as a technique to analyze sequence-induced anomalously migrating DNA fragments.

作者信息

Wenz H M

机构信息

Perkin-Elmer Corp., Applied Biosystems Division, Foster City, CA 94404.

出版信息

Nucleic Acids Res. 1994 Sep 25;22(19):4002-8. doi: 10.1093/nar/22.19.4002.

Abstract

Sequence-induced anomalous migration of double-stranded (ds) DNA in native gel electrophoresis is a well known phenomenon. The retardation of migration is more obvious in polyacrylamide compared with agarose gels, and is greatly affected by the concentration of the gel and the temperature. This anomalous migration results in a difference between calculated and actual sizes of the affected DNA fragments. A low viscosity polymer solution (DNA Fragment Analysis Reagent) under investigation for use in dsDNA analysis by capillary electrophoresis is shown to be useful for the visualization of anomalies in migration of dsDNA fragments. Comparable with traditional slab gel systems, the retardation effect, indicative of bent or curved DNA, is strongly dependent on polymer concentration and separation temperature. These dependencies have implications on the accurate sizing of dsDNA fragments with unknown sequences and secondary structures.

摘要

在天然凝胶电泳中,序列诱导的双链(ds)DNA异常迁移是一种众所周知的现象。与琼脂糖凝胶相比,聚丙烯酰胺凝胶中迁移延迟更为明显,并且受到凝胶浓度和温度的极大影响。这种异常迁移导致受影响的DNA片段计算大小与实际大小之间存在差异。一种正在研究用于毛细管电泳双链DNA分析的低粘度聚合物溶液(DNA片段分析试剂),被证明可用于可视化双链DNA片段迁移中的异常情况。与传统平板凝胶系统类似,指示DNA弯曲或卷曲的延迟效应强烈依赖于聚合物浓度和分离温度。这些依赖性对准确测定具有未知序列和二级结构的双链DNA片段大小具有影响。

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