Hou Ming-Hon, Robinson Howard, Gao Yi-Gui, Wang Andrew H-J
Institute of Biological Chemistry, Academia Sinica, Taipei, 115 Taiwan.
Nucleic Acids Res. 2002 Nov 15;30(22):4910-7. doi: 10.1093/nar/gkf619.
The potent anticancer drug actinomycin D (ActD) acts by binding to DNA GpC sequences, thereby interfering with essential biological processes including replication, transcription and topoisomerase. Certain neurological diseases are correlated with expansion of (CTG)n trinucleotide sequences, which contain many contiguous GpC sites separated by a single base pair. In order to characterize the binding of ActD to CTG triplet repeat sequences, we carried out heat denaturation and CD analyses, which showed that adjacent GpC sequences flanking a T:T mismatch are preferred ActD-binding sites, and that ActD binding results in a conformational transition to A-type structure. The structural basis of the strong binding of ActD to neighboring GpC sites flanking a T:T mismatch was provided by the crystal structure of ActD bound to ATGCTGCAT, which contains a CTG triplet sequence. Binding of two ActD molecules to GCTGC causes a kink in the DNA helix. In addition, using a synthetic self-priming DNA model, 5'-(CAG)4(CTG)(16)-3', we observed that ActD can trap the cruciform or duplexes of (CTG)n and interfere with the expansion process of CTG triplet repeats as shown by gel electrophoretic expansion assay. Our results may provide the possible biological consequence of ActD bound to CTG triplet repeat sequences.
强效抗癌药物放线菌素D(ActD)通过与DNA的GpC序列结合发挥作用,从而干扰包括复制、转录和拓扑异构酶在内的重要生物学过程。某些神经疾病与(CTG)n三核苷酸序列的扩增相关,该序列包含许多由单个碱基对隔开的相邻GpC位点。为了表征ActD与CTG三联体重复序列的结合情况,我们进行了热变性和圆二色性分析,结果表明,T:T错配两侧的相邻GpC序列是ActD的优先结合位点,且ActD的结合会导致构象转变为A型结构。ActD与包含CTG三联体序列的ATGCTGCAT结合的晶体结构,揭示了ActD与T:T错配两侧相邻GpC位点强烈结合的结构基础。两个ActD分子与GCTGC结合会导致DNA螺旋出现扭结。此外,使用合成的自引发DNA模型5'-(CAG)4(CTG)(16)-3',我们观察到ActD可以捕获(CTG)n的十字形结构或双链体,并如凝胶电泳扩增分析所示,干扰CTG三联体重复序列的扩增过程。我们的结果可能揭示了ActD与CTG三联体重复序列结合的潜在生物学后果。