Bontemps J, Houssier C, Fredericq E
Nucleic Acids Res. 1975 Jun;2(6):971-84. doi: 10.1093/nar/2.6.971.
The degree of binding of "33258 Hoechst" to DNA and nucleohistone has been determined by equilibrium dialysis and the properties of the complexes have been followed by different optical and electro-optical methods, after determining the orientation of the main transition moments within the dye molecule. The binding isotherm was found composed of a Langmuir-type and of a strongly cooperative component. The existence of two bound species yielded a continuous variation of most of the properties of the complexes studied as the amount of binding increased, while the hydrodynamic properties of the macromolecules were not affected. At low binding, the strongly bound dye molecules appeared to bind to highly fluorescent sites with their long axis oriented at 45 degree to the helix axis. As the binding proceeds, less fluorescent sites are cooperatively occupied and the inclination of these ligand molecules becomes closer to that of the base planes. These results are compatible with the formation of two external complexes with the double helical structure.
通过平衡透析法测定了“33258 赫斯特”与 DNA 和核组蛋白的结合程度,并在确定染料分子内主要跃迁矩的方向后,采用不同的光学和电光方法跟踪了复合物的性质。发现结合等温线由朗缪尔型和强协同成分组成。随着结合量的增加,两种结合物种的存在导致所研究复合物的大多数性质持续变化,而大分子的流体力学性质不受影响。在低结合时,强结合的染料分子似乎以其长轴与螺旋轴成 45 度角的方向结合到高荧光位点。随着结合的进行,较少的荧光位点被协同占据,这些配体分子的倾斜度变得更接近碱基平面的倾斜度。这些结果与形成具有双螺旋结构的两种外部复合物相一致。