Noolandi J, Slater G W, Lim H A, Viovy J L
Xerox Research Center of Canada, Mississauga, Ontario, Canada.
Science. 1989 Mar 17;243(4897):1456-8. doi: 10.1126/science.2928779.
A theoretical analysis of the reptational motion of DNA in a gel that includes the effects of molecular fluctuations has been used to explain the main features found in experiments involving periodic inversion of the electric field. The resonance-like decrease of the electrophoretic mobility as a function of pulse duration is related to transient "undershoots" in the orientation of the molecule, in agreement with recent experimental data. These features arise from a delicate interplay of internal and center of mass motion of the molecules under pulsed field conditions, and are important for the separation of DNA molecules in the size range 0.2 to 10 million base pairs.
对凝胶中DNA的蠕动运动进行的理论分析(其中包括分子涨落的影响)已被用于解释在涉及电场周期性反转的实验中发现的主要特征。电泳迁移率随脉冲持续时间呈共振式下降,这与分子取向的瞬态“下冲”有关,这与最近的实验数据一致。这些特征源于脉冲场条件下分子内部运动和质心运动之间的微妙相互作用,对于分离大小在0.2到1000万个碱基对范围内的DNA分子很重要。