Ghosh Sumana, Usharani Dandamudi, Paul Ananya, De Susmita, Jemmis Eluvathingal D, Bhattacharya Santanu
Department of Organic Chemistry, Indian Institute of Science, Bangalore 560 012, India.
Bioconjug Chem. 2008 Dec;19(12):2332-45. doi: 10.1021/bc800130u.
Here, we present the synthesis, photochemical, and DNA binding properties of three photoisomerizable azobenzene-distamycin conjugates in which two distamycin units were linked via electron-rich alkoxy or electron-withdrawing carboxamido moieties with the azobenzene core. Like parent distamycin A, these molecules also demonstrated AT-specific DNA binding. Duplex DNA binding abilities of these conjugates were found to depend upon the nature and length of the spacer, the location of protonatable residues, and the isomeric state of the conjugate. The changes in the duplex DNA binding efficiency of the individual conjugates in the dark and with their respective photoirradiated forms were examined by circular dichroism, thermal denaturation of DNA, and Hoechst displacement assay with poly[d(A-T).d(T-A)] DNA in 150 mM NaCl buffer. Computational structural analyses of the uncomplexed ligands using ab initio HF and MP2 theory and molecular docking studies involving the conjugates with duplex d[(GC(AT)10CG)]2 DNA were performed to rationalize the nature of binding of these conjugates.
在此,我们展示了三种可光异构化的偶氮苯-双咪唑啉酮缀合物的合成、光化学及DNA结合特性,其中两个双咪唑啉酮单元通过富电子的烷氧基或吸电子的羧酰胺基部分与偶氮苯核心相连。与母体双咪唑啉酮A一样,这些分子也表现出对AT特异性的DNA结合。发现这些缀合物的双链DNA结合能力取决于间隔基团的性质和长度、可质子化残基的位置以及缀合物的异构状态。通过圆二色性、DNA的热变性以及在150 mM NaCl缓冲液中用聚[d(A-T).d(T-A)] DNA进行的Hoechst置换试验,研究了各个缀合物在黑暗中及其各自光照射形式下双链DNA结合效率的变化。使用从头算HF和MP2理论对未复合配体进行了计算结构分析,并进行了涉及缀合物与双链d[(GC(AT)10CG)]2 DNA的分子对接研究,以阐明这些缀合物结合的性质。