Minagawa K, Matsuzawa Y, Yoshikawa K, Masubuchi Y, Matsumoto M, Doi M, Nishimura C, Maeda M
Graduate School of Human Informatics, Nagoya University, Japan.
Nucleic Acids Res. 1993 Jan 11;21(1):37-40. doi: 10.1093/nar/21.1.37.
The electrophoretic movement and Brownian motion of T4DNA, lambda DNA and their complexes with polyacrylamide (PAAm) via intercalative unit from 5-[(4-acryloylamino)phenyl]-3-amino-7-(dimethylamino)-2-methylp henazinium chloride were observed using fluorescence microscopy. It was found that T4DNA/PAAm complex migrates slower than T4DNA alone in gel electrophoresis, although they exhibit similar conformational change during the migration. Quantitative analyses of the translational diffusion of the lambda DNA and its complex in solution demonstrate that the DNA molecules extend due to intercalative binding of PAAm, suggesting the pseudo-grafting structure of the complex.
利用荧光显微镜观察了T4DNA、λDNA及其与通过5-[(4-丙烯酰氨基)苯基]-3-氨基-7-(二甲氨基)-2-甲基吩嗪鎓氯化物的嵌入单元与聚丙烯酰胺(PAAm)形成的复合物的电泳迁移和布朗运动。结果发现,在凝胶电泳中,T4DNA/PAAm复合物的迁移速度比单独的T4DNA慢,尽管它们在迁移过程中表现出相似的构象变化。对λDNA及其在溶液中的复合物的平动扩散进行定量分析表明,由于PAAm的嵌入结合,DNA分子得以伸展,这表明该复合物具有假接枝结构。