Interdisciplinary Biotechnology Unit, Aligarh Muslim University, Aligarh, India.
PLoS One. 2012;7(12):e51850. doi: 10.1371/journal.pone.0051850. Epub 2012 Dec 14.
Epirubicin (EPI), an anthracycline antitumour antibiotic, is a known intercalating and DNA damaging agent. Here, we study the molecular interaction of EPI with histones and other cellular targets. EPI binding with histone core protein was predicted with spectroscopic and computational techniques. The molecular distance r, between donor (histone H3) and acceptor (EPI) was estimated using Förster's theory of non-radiation energy transfer and the detailed binding phenomenon is expounded. Interestingly, the concentration dependent reduction in the acetylated states of histone H3 K9/K14 was observed suggesting more repressed chromatin state on EPI treatment. Its binding site near N-terminal lysines is further characterized by thermodynamic determinants and molecular docking studies. Specific DNA binding and inhibition of transcription factor (Tf)-DNA complex formation implicates EPI induced transcriptional inhibition. EPI also showed significant cell cycle arrest in drug treated cells. Chromatin fragmentation and loss of membrane integrity in EPI treated cells is suggestive of their commitment to cell death. This study provides an analysis of nucleosome dynamics during EPI treatment and provides a novel insight into its action.
表阿霉素(EPI)是一种蒽环类抗肿瘤抗生素,已知是一种嵌入和 DNA 损伤剂。在这里,我们研究了 EPI 与组蛋白和其他细胞靶标的分子相互作用。使用光谱和计算技术预测了 EPI 与核心组蛋白的结合。使用福斯特(Förster)的非辐射能量转移理论估计了供体(组蛋白 H3)和受体(EPI)之间的分子距离 r,并阐述了详细的结合现象。有趣的是,观察到组蛋白 H3 K9/K14 的乙酰化状态随浓度降低,表明 EPI 处理后染色质状态受到更多抑制。通过热力学测定和分子对接研究进一步表征了其靠近 N 端赖氨酸的结合位点。EPI 结合特异性 DNA 并抑制转录因子(Tf)-DNA 复合物的形成,表明 EPI 诱导转录抑制。EPI 还导致药物处理的细胞中出现明显的细胞周期停滞。EPI 处理的细胞中染色质片段化和膜完整性丧失提示它们已走向细胞死亡。这项研究提供了 EPI 处理期间核小体动力学的分析,并为其作用提供了新的见解。