Institute of Genomics and Bioinformatics, National Chung Hsing University, Taichung 402, Taiwan.
Nucleic Acids Res. 2013 Apr;41(7):4284-94. doi: 10.1093/nar/gkt084. Epub 2013 Feb 13.
The potent anticancer drug actinomycin D (ActD) functions by intercalating into DNA at GpC sites, thereby interrupting essential biological processes including replication and transcription. Certain neurological diseases are correlated with the expansion of (CGG)n trinucleotide sequences, which contain many contiguous GpC sites separated by a single G:G mispair. To characterize the binding of ActD to CGG triplet repeat sequences, the structural basis for the strong binding of ActD to neighbouring GpC sites flanking a G:G mismatch has been determined based on the crystal structure of ActD bound to ATGCGGCAT, which contains a CGG triplet sequence. The binding of ActD molecules to GCGGC causes many unexpected conformational changes including nucleotide flipping out, a sharp bend and a left-handed twist in the DNA helix via a two site-binding model. Heat denaturation, circular dichroism and surface plasmon resonance analyses showed that adjacent GpC sequences flanking a G:G mismatch are preferred ActD-binding sites. In addition, ActD was shown to bind the hairpin conformation of (CGG)16 in a pairwise combination and with greater stability than that of other DNA intercalators. Our results provide evidence of a possible biological consequence of ActD binding to CGG triplet repeat sequences.
强效抗癌药物放线菌素 D(ActD)通过在 GpC 位点插入 DNA 而起作用,从而中断包括复制和转录在内的重要生物学过程。某些神经疾病与(CGG)n 三核苷酸序列的扩展有关,该序列包含许多相邻的 GpC 位点,由单个 G:G 错配隔开。为了研究 ActD 与 CGG 三核苷酸重复序列的结合情况,基于 ActD 与 ATGCGGCAT 结合的晶体结构,确定了 ActD 与侧翼 G:G 错配的邻近 GpC 位点强结合的结构基础,该结构含有 CGG 三核苷酸序列。ActD 分子与 GCGGC 的结合导致许多意想不到的构象变化,包括核苷酸翻转、DNA 螺旋的急剧弯曲和左旋扭曲,这是通过双位点结合模型实现的。热变性、圆二色性和表面等离子体共振分析表明,侧翼 G:G 错配的相邻 GpC 序列是 ActD 结合的首选位点。此外,ActD 被证明以成对组合的方式结合(CGG)16 的发夹构象,并且比其他 DNA 嵌入剂更稳定。我们的研究结果为 ActD 与 CGG 三核苷酸重复序列结合的可能生物学后果提供了证据。