Smith S B, Aldridge P K, Callis J B
Department of Genetics, University of Washington, Seattle 98195.
Science. 1989 Jan 13;243(4888):203-6. doi: 10.1126/science.2911733.
Individual DNA molecules undergoing agarose gel electrophoresis were viewed with the aid of a fluorescence microscope. Molecular shape and orientation were studied in both steady and pulsed electric fields. It was observed that (i) DNA macromolecules advanced lengthwise through the gel in an extended configuration, (ii) the molecules alternately contracted and lengthened as they moved, (iii) the molecules often became hooked around obstacles in a U-shape for extended periods, and (iv) the molecules displayed elasticity as they extended from both ends at once. A computer model has been developed that simulates the migration of the molecules in a rotating-field gel electrophoresis experiment.
借助荧光显微镜观察了进行琼脂糖凝胶电泳的单个DNA分子。在稳定电场和脉冲电场中研究了分子的形状和取向。观察到:(i)DNA大分子以伸展构型在凝胶中沿长度方向前进;(ii)分子在移动时交替收缩和伸长;(iii)分子经常在障碍物周围呈U形钩住很长时间;(iv)分子在从两端同时伸展时表现出弹性。已经开发了一个计算机模型,用于模拟旋转场凝胶电泳实验中分子的迁移。