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深入探索 4-氨基喹啉化学空间,以探索赖氨酸甲基转移酶 G9a 和 DNA 甲基转移酶的生物学空间。

Detailed Exploration around 4-Aminoquinolines Chemical Space to Navigate the Lysine Methyltransferase G9a and DNA Methyltransferase Biological Spaces.

机构信息

WuXi Apptec (Tianjin) Co. Ltd., TEDA , No. 111 HuangHai Road, Fourth Avenue , Tianjin 300456 , PR China.

Departmento de Hematología, Clinica Universidad de Navarra , University of Navarra , Avenida Pio XII 36 , E-31008 Pamplona , Spain.

出版信息

J Med Chem. 2018 Aug 9;61(15):6546-6573. doi: 10.1021/acs.jmedchem.7b01925. Epub 2018 Jul 19.

Abstract

Epigenetic regulators that exhibit aberrant enzymatic activities or expression profiles are potential therapeutic targets for cancers. Specifically, enzymes responsible for methylation at histone-3 lysine-9 (like G9a) and aberrant DNA hypermethylation (DNMTs) have been implicated in a number of cancers. Recently, molecules bearing a 4-aminoquinoline scaffold were reported as dual inhibitors of these targets and showed a significant in vivo efficacy in animal models of hematological malignancies. Here, we report a detailed exploration around three growing vectors born by this chemotype. Exploring this chemical space led to the identification of features to navigate G9a and DNMT1 biological spaces: not only their corresponding exclusive areas, selective compounds, but also common spaces. Thus, we identified from selective G9a and first-in-class DNMT1 inhibitors, >1 log unit between their IC values, with IC < 25 nM (e.g., 43 and 26, respectively) to equipotent inhibitors with IC < 50 nM for both targets (e.g., 13). Their ADME/Tox profiling and antiproliferative efficacies, versus some cancer cell lines, are also reported.

摘要

表观遗传调控因子表现出异常的酶活性或表达谱,是癌症的潜在治疗靶点。具体来说,负责组蛋白-3 赖氨酸-9 甲基化的酶(如 G9a)和异常的 DNA 高甲基化(DNMTs)与许多癌症有关。最近,带有 4-氨基喹啉支架的分子被报道为这两个靶点的双重抑制剂,并在血液系统恶性肿瘤的动物模型中显示出显著的体内疗效。在这里,我们报告了围绕这一化学类型的三个增长向量的详细探索。探索这个化学空间导致了识别功能来导航 G9a 和 DNMT1 生物空间:不仅是它们各自的专属区域、选择性化合物,还有共同的空间。因此,我们从选择性 G9a 和首创的 DNMT1 抑制剂中鉴定出,它们的 IC 值之间有 >1 个对数单位的差异,IC < 25 nM(例如,分别为 43 和 26),对于两个靶点具有等效抑制作用的抑制剂,IC < 50 nM(例如,13)。还报告了它们的 ADME/Tox 特性和对一些癌细胞系的抗增殖功效。

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