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DNA的不连续电泳:通过尾随离子净迁移率调节DNA迁移率

Discontinuous electrophoresis of DNA: adjusting DNA mobility by trailing ion net mobility.

作者信息

Doktycz M J

机构信息

Biology Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831-8077.

出版信息

Anal Biochem. 1993 Sep;213(2):400-6. doi: 10.1006/abio.1993.1438.

Abstract

The use of a discontinuous buffer system, where a moving boundary separates ions of like charge but different ionic mobilities, for DNA electrophoresis may hold advantages over continuous zone electrophoresis in terms of resolution and electrophoresis time. Discontinuous buffer systems with calculated trailing ion net mobility were used to evaluate DNA mobility on gels of a constant pore size. Standard double-stranded DNA ladders and dideoxy sequencing ladders were electrophoresed on open-faced gels and standard sequencing gels, respectively. Trailing ion net mobility was systematically varied, while the leading ion mobility and concentration were kept constant. Decreasing trailing ion net mobility from 2.17 x 10(-4) to 0.59 x 10(-4) cm2 V-1s-1 generally led to increased DNA migration on both native and denaturing gels, allowing resolution of higher molecular weight DNAs with decreased electrophoresis time. However, on native open-faced gels, net trailing ion mobilities between 1.38 x 10(-4) and 1.76 x 10(-4) cm2 V-1s-1 had no differential effects for a 10-cm separation and kept DNAs smaller than approximately 75 bp stacked in the moving boundary and clearly resolved DNA between 100 and 600 bp. These results indicate that various DNA size ranges can be separated in short time periods by adjusting the net mobility of the trailing ion.

摘要

在DNA电泳中,使用一种不连续缓冲系统(其中移动边界将电荷相同但离子迁移率不同的离子分隔开),在分辨率和电泳时间方面可能比连续区带电泳更具优势。使用具有计算得出的尾随离子净迁移率的不连续缓冲系统来评估恒定孔径凝胶上的DNA迁移率。标准双链DNA阶梯和双脱氧测序阶梯分别在敞口凝胶和标准测序凝胶上进行电泳。系统地改变尾随离子净迁移率,同时保持前导离子迁移率和浓度恒定。将尾随离子净迁移率从2.17×10⁻⁴降低到0.59×10⁻⁴ cm² V⁻¹s⁻¹通常会导致天然凝胶和变性凝胶上的DNA迁移增加,从而在缩短电泳时间的情况下实现更高分子量DNA的分离。然而,在天然敞口凝胶上,对于10厘米的分离距离,1.38×10⁻⁴至1.76×10⁻⁴ cm² V⁻¹s⁻¹之间的尾随离子净迁移率没有差异影响,并且使小于约75 bp的DNA堆积在移动边界中,同时能清晰分离100至600 bp之间的DNA。这些结果表明,通过调节尾随离子的净迁移率,可以在短时间内分离各种DNA大小范围。

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