Pluen A, Tinland B, Sturm J, Weill G
Institut Charles Sadron, C.N.R.S. and Université Louis Pasteur, Strasbourg, France.
Electrophoresis. 1998 Jul;19(10):1548-59. doi: 10.1002/elps.1150191005.
By using fluorescence recovery after photobleaching (FRAP) and electric birefringence, the migration of single-stranded DNA in polyacrylamide gels and orientation as a response to an electric pulse were investigated. Electrophoretic mobility is in good agreement with the model of biased reptation including fluctuations. The determination of the electrophoretic mobility in solution, mu0, allows an estimation of the gel pore diameter seen by the molecule. As previously observed for double-stranded DNA, the electric birefringence results from two processes: the alignment of the molecule along the electric field and the elongation of the primitive path in the gel, for long single-stranded DNA (>2000 bases). The combination of results obtained with the two techniques allows us to propose experimental conditions to improve the separation of single-stranded DNA with pulsed field techniques.
通过使用光漂白后荧光恢复(FRAP)和电场双折射技术,研究了单链DNA在聚丙烯酰胺凝胶中的迁移以及对电脉冲响应时的取向。电泳迁移率与包含涨落的偏置蛇行模型高度吻合。溶液中电泳迁移率μ0的测定,使得能够估计分子所看到的凝胶孔径。正如之前对双链DNA所观察到的那样,电场双折射源于两个过程:分子沿电场方向的排列以及凝胶中原始路径的伸长,对于长单链DNA(>2000个碱基)而言。两种技术所获得结果的结合,使我们能够提出实验条件,以利用脉冲场技术改善单链DNA的分离。