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从高通量筛选中鉴定新型 DNA 甲基转移酶抑制剂的对接:揭示化学数据库中抑制剂的见解。

Docking of a novel DNA methyltransferase inhibitor identified from high-throughput screening: insights to unveil inhibitors in chemical databases.

机构信息

Instituto de Química, Universidad Nacional Autónoma de México, Circuito Exterior, Ciudad Universitaria, 04510 México, D.F., Mexico.

出版信息

Mol Divers. 2013 May;17(2):337-44. doi: 10.1007/s11030-013-9428-z. Epub 2013 Feb 28.

Abstract

Inhibitors of DNA methyltransferase (DNMT) are attractive compounds not only as potential therapeutic agents for the treatment of cancer and other diseases, but also as research tools to investigate the role of DNMTs in epigenetic events. Recent advances in high-throughput screening (HTS) for epigenetic targets and the availability of the first crystallographic structure of human DNMT1 encourage the integration of research strategies to uncover and optimize the activity of DNMT inhibitors. Herein, we present a binding model of a novel small-molecule DNMT1 inhibitor obtained by HTS, recently released in a public database. The docking model is in agreement with key interactions previously identified for established inhibitors using extensive computational studies including molecular dynamics and structure-based pharmacophore modeling. Based on the chemical structure of the novel inhibitor, a sequential computational screening of five chemical databases was performed to identify candidate compounds for testing. Similarity searching followed by molecular docking of chemical databases such as approved drugs, natural products, a DNMT-focused library, and a general screening collection, identified at least 108 molecules with promising DNMT inhibitory activity. The chemical structures of all hit compounds are disclosed to encourage the research community working on epigenetics to test experimentally the enzymatic and demethylating activity in vivo. Five candidate hits are drugs approved for other indications and represent potential starting points of a drug repurposing strategy.

摘要

DNA 甲基转移酶(DNMT)抑制剂不仅作为治疗癌症和其他疾病的潜在治疗剂具有吸引力,而且作为研究工具来研究 DNMT 在表观遗传事件中的作用也具有吸引力。最近在高通量筛选(HTS)用于表观遗传靶点方面的进展以及人源 DNMT1 的第一个晶体结构的可用性鼓励整合研究策略以发现和优化 DNMT 抑制剂的活性。本文展示了通过 HTS 获得的新型小分子 DNMT1 抑制剂的结合模型,该模型最近在公共数据库中发布。对接模型与先前使用广泛的计算研究(包括分子动力学和基于结构的药效团建模)为已建立的抑制剂确定的关键相互作用一致。基于新型抑制剂的化学结构,对五个化学数据库进行了顺序计算筛选,以鉴定候选化合物进行测试。相似性搜索后,对批准药物、天然产物、DNMT 重点库和一般筛选库等化学数据库进行分子对接,鉴定出至少 108 种具有潜在 DNMT 抑制活性的分子。公开了所有命中化合物的化学结构,以鼓励从事表观遗传学研究的研究人员在体内测试其酶和去甲基化活性。五个候选命中药物是用于其他适应症的批准药物,代表药物重新定位策略的潜在起点。

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