Université de Lorraine - Nancy, Theory-Modeling-Simulation SRSMC, Vandoeuvre-lès-Nancy, France.
CNRS, Theory-Modeling-Simulation SRSMC, Vandoeuvre-lès-Nancy, France.
Sci Rep. 2016 Jun 22;6:28480. doi: 10.1038/srep28480.
We report a molecular modeling study, coupled with spectroscopy experiments, on the behavior of two well known organic dyes, nile blue and nile red, when interacting with B-DNA. In particular, we evidence the presence of two competitive binding modes, for both drugs. However their subsequent photophysical behavior is different and only nile blue is able to induce DNA photosensitization via an electron transfer mechanism. Most notably, even in the case of nile blue, its sensitization capabilities strongly depend on the environment resulting in a single active binding mode: the minor groove. Fluorescence spectroscopy confirms the presence of competitive interaction modes for both sensitizers, while the sensitization via electron transfer, is possible only in the case of nile blue.
我们报告了一项分子建模研究,结合光谱实验,研究了两种著名的有机染料尼罗蓝和尼罗红与 B-DNA 相互作用时的行为。特别是,我们证明了这两种药物都存在两种竞争性结合模式。然而,它们随后的光物理行为是不同的,只有尼罗蓝能够通过电子转移机制诱导 DNA 光敏化。值得注意的是,即使是在尼罗蓝的情况下,其敏化能力也强烈依赖于环境,导致只有一种活性结合模式:小沟。荧光光谱证实了两种敏化剂都存在竞争性相互作用模式,而只有尼罗蓝能够通过电子转移进行敏化。