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利用原子力显微镜对不同拓扑结构的 DNA 进行分离,与凝胶电泳进行比较。

Separating DNA with different topologies by atomic force microscopy in comparison with gel electrophoresis.

机构信息

School of Chemistry and Chemical Engineering, Southeast University, Jiangning, Nanjing, Jiangsu 211189, People's Republic of China.

出版信息

J Phys Chem B. 2010 Sep 23;114(37):12162-5. doi: 10.1021/jp105603k.

Abstract

Atomic force microscopy, which is normally used for DNA imaging to gain qualitative results, can also be used for quantitative DNA research, at a single-molecular level. Here, we evaluate the performance of AFM imaging specifically for quantifying supercoiled and relaxed plasmid DNA fractions within a mixture, and compare the results with the bulk material analysis method, gel electrophoresis. The advantages and shortcomings of both methods are discussed in detail. Gel electrophoresis is a quick and well-established quantification method. However, it requires a large amount of DNA, and needs to be carefully calibrated for even slightly different experimental conditions for accurate quantification. AFM imaging is accurate, in that single DNA molecules in different conformations can be seen and counted. When used carefully with necessary correction, both methods provide consistent results. Thus, AFM imaging can be used for DNA quantification, as an alternative to gel electrophoresis.

摘要

原子力显微镜通常用于 DNA 成像以获得定性结果,也可以用于在单分子水平上进行定量 DNA 研究。在这里,我们评估了 AFM 成像在定量混合超螺旋和松弛质粒 DNA 分数方面的性能,并将结果与批量材料分析方法凝胶电泳进行了比较。详细讨论了这两种方法的优缺点。凝胶电泳是一种快速且成熟的定量方法。但是,它需要大量的 DNA,并且需要针对甚至稍有不同的实验条件进行仔细校准,才能进行准确的定量。原子力显微镜成像非常准确,可以看到和计数不同构象的单个 DNA 分子。如果谨慎使用并进行必要的校正,则两种方法都可以提供一致的结果。因此,原子力显微镜成像可以替代凝胶电泳用于 DNA 定量。

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Visualization of alkali-denatured supercoiled plasmid DNA by atomic force microscopy.通过原子力显微镜观察碱变性超螺旋质粒DNA
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