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首页> 外文期刊>Journal of molecular graphics & modelling >Development of highly predictive 3D-QSAR CoMSIA models for anthraquinone and acridone derivatives as telomerase inhibitors targeting G-quadruplex DNA telomere
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Development of highly predictive 3D-QSAR CoMSIA models for anthraquinone and acridone derivatives as telomerase inhibitors targeting G-quadruplex DNA telomere

机译:蒽醌和a啶酮衍生物作为靶向G-四链体DNA端粒的端粒酶抑制剂的高预测性3D-QSAR CoMSIA模型的开发

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摘要

G-quadruplex structures of DNA represent a potentially useful target for anticancer drugs. Telomerase enzyme, involved in immortalization of cancer cells is inhibited by stabilization of G-quadruplex at the ends of chromosomes. Anthraquinone and acridone derivatives are promising G-quadruplex ligands as telomerase inhibitors. So far, optimization of these ligands remained hampered due to the lack of creditable quantitative structure-activity relationships. To understand the structural basis of anthraquinone and acridone derivatives, a predictive 3D-QSAR model has been developed for the first time for telomerase inhibitory activity of G4 ligands, employing comparative molecular similarity indices analysis (CoMSIA). Considering the proposition that the basic nitrogens in these compounds should exist in protonated form at physiological pH the protonated forms of the reported compounds were analyzed and investigated. The QSAR model from conformational template Conf1 exhibited best correlative and predictive properties. The actual predictive abilities of the QSAR model were thoroughly validated through an external validation test set of compounds. The statistics indicate a significantly high prediction power of the best model (r~2, 0.721), supporting the proposed molecular mechanism of DNA G-quadruplex ligands.
机译:DNA的G-四链体结构代表了抗癌药物的潜在有用靶标。参与癌细胞永生化的端粒酶被染色体末端的G-四链体稳定所抑制。蒽醌和a啶酮衍生物是有前途的G-四链体配体作为端粒酶抑制剂。到目前为止,由于缺乏可靠的定量结构-活性关系,这些配体的优化仍然受到阻碍。为了解蒽醌和a啶酮衍生物的结构基础,首次采用比较分子相似性指数分析(CoMSIA)为G4配体端粒酶抑制活性建立了预测性3D-QSAR模型。考虑到这些化合物中的碱性氮应在生理pH下以质子化形式存在的主张,对所报告化合物的质子化形式进行了分析和研究。构象模板Conf1的QSAR模型表现出最佳的相关性和预测性。通过化合物的外部验证测试集,对QSAR模型的实际预测能力进行了全面验证。统计数据表明,最佳模型的预测力极高(r〜2,0.721),支持了所提出的DNA G-四链体配体的分子机理。

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