Rome Center for Molecular Design, Dipartimento di Chimica e Tecnologie del Farmaco, Sapienza Università di Roma, P. le A. Moro 5, 00185, Roma, Italy.
Dipartimento di Chimica e Tecnologie del Farmaco, Istituto Pasteur - Fondazione Cenci Bolognetti, Sapienza Università di Roma, P. le A. Moro 5, 00185, Roma, Italy.
J Comput Aided Mol Des. 2018 Mar;32(3):435-458. doi: 10.1007/s10822-018-0096-z. Epub 2018 Jan 15.
Chemical inhibition of chromatin-mediated signaling involved proteins is an established strategy to drive expression networks and alter disease progression. Protein methyltransferases are among the most studied proteins in epigenetics and, in particular, disruptor of telomeric silencing 1-like (DOT1L) lysine methyltransferase plays a key role in MLL-rearranged acute leukemia Selective inhibition of DOT1L is an established attractive strategy to breakdown aberrant H3K79 methylation and thus overexpression of leukemia genes, and leukemogenesis. Although numerous DOT1L inhibitors have been several structural data published no pronounced computational efforts have been yet reported. In these studies a first tentative of multi-stage and LB/SB combined approach is reported in order to maximize the use of available data. Using co-crystallized ligand/DOT1L complexes, predictive 3-D QSAR and COMBINE models were built through a python implementation of previously reported methodologies. The models, validated by either modeled or experimental external test sets, proved to have good predictive abilities. The application of these models to an internal library led to the selection of two unreported compounds that were found able to inhibit DOT1L at micromolar level. To the best of our knowledge this is the first report of quantitative LB and SB DOT1L inhibitors models and their application to disclose new potential epigenetic modulators.
化学抑制染色质介导的信号转导相关蛋白是一种已被确立的策略,可用于驱动表达网络并改变疾病进展。蛋白质甲基转移酶是表观遗传学中研究最多的蛋白质之一,特别是端粒沉默 1 样蛋白(DOT1L)赖氨酸甲基转移酶在 MLL 重排急性白血病中起着关键作用。选择性抑制 DOT1L 是一种已被确立的有吸引力的策略,可以破坏异常的 H3K79 甲基化,从而过度表达白血病基因和白血病发生。尽管已经发表了许多 DOT1L 抑制剂的结构数据,但尚未报道明显的计算工作。在这些研究中,报告了一种初步的多阶段和 LB/SB 联合方法,以最大限度地利用现有数据。使用共结晶配体/DOT1L 复合物,通过以前报道的方法的 Python 实现,构建了预测性 3-D QSAR 和 COMBINE 模型。通过模型或实验外部测试集验证的模型被证明具有良好的预测能力。将这些模型应用于内部库,选择了两种未报道的化合物,发现它们能够以微摩尔水平抑制 DOT1L。据我们所知,这是首次报道定量 LB 和 SB DOT1L 抑制剂模型及其在揭示新的潜在表观遗传调节剂中的应用。