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Investigating DNA Migration in Pulsed Fields Using a Miniaturized Field Inversion Gel Electrophoresis System

机译:使用微型场反转凝胶电泳系统研究脉冲场中的DNA迁移

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摘要

Pulsed field gel electrophoresis (PFGE) is a well-established technique for fractionation of DNA fragments ranging from kilobases to megabases in length. But many of these separations require an undesirable combination of long experiment times (often approaching tens of hours) and application of high voltages (often approaching tens of kV). Here we present a simple miniaturized field inversion gel electrophoresis (FIGE) apparatus capable of separating DNA fragments up to 32.5 kb in length within 3 hours using a modest applied potential of 20 V. The device is small enough to be imaged under a fluorescence microscope, permitting the migrating DNA bands to be observed during the course of the separation run. We use this capability to investigate how separation performance is affected by parameters including the ratio of forward and backward voltage, pulse time, and temperature. We also characterize the dependence of DNA mobility on fragment size N, and observe a scaling in the vicinity of N−0.5 over the size range investigated. The high speed, low power consumption, and simple design of this system may help enable future studies of DNA migration in PFGE to be performed quickly and inexpensively.
机译:脉冲场凝胶电泳(PFGE)是一种成熟的技术,可用于分馏长度范围从千碱基到兆碱基的DNA片段。但是,其中许多分离操作都需要较长的实验时间(通常接近数十小时)和施加高电压(通常接近数十kV)的不良组合。在这里,我们介绍了一种简单的小型化场反转凝胶电泳(FIGE)装置,该装置能够使用20 V的适度施加电势,在3小时内分离长度达32.5 kb的DNA片段。该装置足够小,可以在荧光显微镜下成像,允许在分离过程中观察到迁移的DNA条带。我们使用此功能来研究分离性能如何受到参数的影响,这些参数包括正向和反向电压之比,脉冲时间和温度。我们还表征了DNA迁移率对片段大小N的依赖性,并在研究的大小范围内观察到N -0.5 附近的缩放。该系统的高速,低功耗和简单的设计可能有助于使PFGE中DNA迁移的未来研究能够快速,廉价地进行。

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