Bancroft I, Wolk C P
MSU-DOE Plant Research Laboratory, Michigan State University, East Lansing 48824.
Nucleic Acids Res. 1988 Aug 11;16(15):7405-18. doi: 10.1093/nar/16.15.7405.
A versatile system (PHOGE) has been developed that allows resolution of molecules of DNA megabase pair size by the use of homogeneous, orthogonal, pulsed fields. The resulting electrophoretograms have characteristics that differ from those produced by other systems for pulsed field electrophoresis. Molecules in a two-fold range of sizes can be separated with maximum resolution, or a much larger range of sizes may be separated with lower resolution but with a linear relationship of mobility to size from 50 kb, or below, to at least 1 Mb. Straight lanes and large useable gel areas, characteristic of PHOGE, are also valuable for mapping procedures or for any other circumstance in which large numbers of samples of DNA are to be directly compared. Existing models cannot explain the results obtained, because a stage of the molecular reorientation appears to result in a rate of migration greater than that occurring by reptation. We suggest a mechanism that might account for the resolution observed and also suggest that the resolution achieved by existing OFAGE-type systems may be the result of the superimposition of PHOGE and FIGE separatory mechanisms. No maximum size of molecules that may be resolved by the PHOGE system has yet been determined.
已开发出一种通用系统(PHOGE),该系统通过使用均匀、正交的脉冲场来分辨兆碱基对大小的DNA分子。所得的电泳图谱具有与其他脉冲场电泳系统产生的图谱不同的特征。大小在两倍范围内的分子可以以最大分辨率分离,或者更大范围的大小可以以较低分辨率分离,但从50 kb或更低到至少1 Mb,迁移率与大小呈线性关系。PHOGE特有的直泳道和大的可用凝胶区域,对于图谱绘制程序或任何其他需要直接比较大量DNA样本的情况也很有价值。现有模型无法解释所获得的结果,因为分子重新定向的一个阶段似乎导致迁移速率大于通过蛇行发生的迁移速率。我们提出了一种可能解释所观察到的分辨率的机制,并还提出现有OFAGE型系统所实现的分辨率可能是PHOGE和FIGE分离机制叠加的结果。尚未确定PHOGE系统可分辨的分子的最大大小。