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小分子药物研发:靶向端粒酶反转录酶高级结构启动子 G-四链体。

Drug discovery of small molecules targeting the higher-order hTERT promoter G-quadruplex.

机构信息

UofL Health Brown Cancer Center, University of Louisville, Louisville, Kentucky, United States of America.

Department of Medicine, University of Louisville, Louisville, Kentucky, United States of America.

出版信息

PLoS One. 2022 Jun 16;17(6):e0270165. doi: 10.1371/journal.pone.0270165. eCollection 2022.

Abstract

DNA G-quadruplexes (G4s) are now widely accepted as viable targets in the pursuit of anticancer therapeutics. To date, few small molecules have been identified that exhibit selectivity for G4s over alternative forms of DNA, such as the ubiquitous duplex. We posit that the lack of current ligand specificity arises for multiple reasons: G4 atomic models are often small, monomeric, single quadruplex structures with few or no druggable pockets; targeting G-tetrad faces frequently results in the enrichment of extended electron-deficient polyaromatic end-pasting scaffolds; and virtual drug discovery efforts often under-sample chemical search space. We show that by addressing these issues we can enrich for non-standard molecular templates that exhibit high selectivity towards G4s over other forms of DNA. We performed an extensive virtual screen against the higher-order hTERT core promoter G4 that we have previously characterized, targeting 12 of its unique loop and groove pockets using libraries containing 40 million drug-like compounds for each screen. Using our drug discovery funnel approach, which utilizes high-throughput fluorescence thermal shift assay (FTSA) screens, microscale thermophoresis (MST), and orthogonal biophysical methods, we have identified multiple unique G4 binding scaffolds. We subsequently used two rounds of catalogue-based SAR to increase the affinity of a disubstituted 2-aminoethyl-quinazoline that stabilizes the higher-order hTERT G-quadruplex by binding across its G4 junctional sites. We show selectivity of its binding affinity towards hTERT is virtually unaffected in the presence of near-physiological levels of duplex DNA, and that this molecule downregulates hTERT transcription in breast cancer cells.

摘要

DNA 四链体(G4s)现在被广泛认为是抗癌治疗的可行靶点。迄今为止,已经鉴定出很少的小分子,它们对 G4 具有选择性,而不是对其他形式的 DNA,如普遍存在的双链体。我们假设当前配体特异性缺乏的原因有很多:G4 原子模型通常很小,是单体、单四链体结构,具有很少或没有可成药的口袋;靶向 G-四联体面经常导致扩展的缺电子多芳环末端粘贴支架的富集;虚拟药物发现工作往往对化学搜索空间的采样不足。我们表明,通过解决这些问题,我们可以富集表现出对 G4 比对其他形式的 DNA 更高选择性的非标准分子模板。我们针对我们之前表征过的更高阶 hTERT 核心启动子 G4 进行了广泛的虚拟筛选,使用包含每个筛选 4000 万个药物样化合物的文库针对其 12 个独特的环和沟口袋进行靶向。使用我们的药物发现漏斗方法,该方法利用高通量荧光热移位测定(FTSA)筛选、微尺度热泳(MST)和正交生物物理方法,我们已经鉴定出多个独特的 G4 结合支架。随后,我们使用两轮基于目录的 SAR 来增加稳定更高阶 hTERT G-四链体的二取代 2-氨基乙基-喹唑啉的亲和力,该化合物通过结合其 G4 连接点来稳定 G-四链体。我们表明,在接近生理水平的双链 DNA 存在下,其结合亲和力对 hTERT 的选择性几乎没有影响,并且该分子下调乳腺癌细胞中的 hTERT 转录。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa62/9202945/f4946389d6a5/pone.0270165.g001.jpg

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