Wilson W D, Keel R A, Jones R L, Mosher C W
Nucleic Acids Res. 1982 Jul 10;10(13):4093-106. doi: 10.1093/nar/10.13.4093.
The interaction with closed circular supercoiled and linear DNA of bisphenanthridinium compounds substituted through both the meta and para positions of the 6-phenyl group, along with appropriate monomer intercalators as controls, has been investigated by viscometric titration. When CPK models for the phenanthridinium rings of the three bis-compounds are oriented in a parallel manner as a model for intercalation, their ring plane to ring plane distances are approximately 7 to 8 A (SR 2430), 11 A (SR 2193), and 15 A (SR 2166). In SR 2430 the two phenanthridines are linked through the para positions of the 6-phenyl group; this chain allows intercalation of the two rings at adjacent binding sites in DNA, but is not long enough to accommodate an excluded site. The viscometric titrations with both superhelical and linear DNA clearly indicate that SR 2430 gives results close to those of the monomer control compounds while SR 2193 and SR 2166 have approximately twice the unwinding angle and DNA length increase on binding to DNA as the monomer compounds. These phenanthridinium compounds, therefore, are capable of bisintercalation only if their linking groups are of sufficient length to allow an excluded binding site between base pairs. This conclusion is supported by DNA thermal denaturation experiments in the presence of these compounds.
通过粘度滴定法研究了6-苯基间位和对位均被取代的双菲啶化合物与闭环超螺旋DNA和线性DNA的相互作用,并以适当的单体嵌入剂作为对照。当将三种双化合物的菲啶环的CPK模型以平行方式排列作为嵌入模型时,它们的环平面到环平面的距离约为7至8埃(SR 2430)、11埃(SR 2193)和15埃(SR 2166)。在SR 2430中,两个菲啶通过6-苯基的对位相连;该链允许两个环在DNA的相邻结合位点嵌入,但长度不足以容纳一个排除位点。用超螺旋DNA和线性DNA进行的粘度滴定清楚地表明,SR 2430给出的结果与单体对照化合物的结果相近,而SR 2193和SR 2166与DNA结合时的解旋角和DNA长度增加约为单体化合物的两倍。因此,这些菲啶化合物只有在其连接基团具有足够长度以允许碱基对之间存在一个排除结合位点时,才能够进行双嵌入。在这些化合物存在下进行的DNA热变性实验支持了这一结论。