首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Computational Characterization of Small Molecules Binding to the Human XPF Active Site and Virtual Screening to Identify Potential New DNA Repair Inhibitors Targeting the ERCC1-XPF Endonuclease
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Computational Characterization of Small Molecules Binding to the Human XPF Active Site and Virtual Screening to Identify Potential New DNA Repair Inhibitors Targeting the ERCC1-XPF Endonuclease

机译:小分子与人类XPF活性位点结合的计算表征和虚拟筛选以鉴定靶向ERCC1-XPF核酸内切酶的潜在新DNA修复抑制剂

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摘要

The DNA excision repair protein ERCC-1-DNA repair endonuclease XPF (ERCC1-XPF) is a heterodimeric endonuclease essential for the nucleotide excision repair (NER) DNA repair pathway. Although its activity is required to maintain genome integrity in healthy cells, ERCC1-XPF can counteract the effect of DNA-damaging therapies such as platinum-based chemotherapy in cancer cells. Therefore, a promising approach to enhance the effect of these therapies is to combine their use with small molecules, which can inhibit the repair mechanisms in cancer cells. Currently, there are no structures available for the catalytic site of the human ERCC1-XPF, which performs the metal-mediated cleavage of a DNA damaged strand at 5′. We adopted a homology modeling strategy to build a structural model of the human XPF nuclease domain which contained the active site and to extract dominant conformations of the domain using molecular dynamics simulations followed by clustering of the trajectory. We investigated the binding modes of known small molecule inhibitors targeting the active site to build a pharmacophore model. We then performed a virtual screening of the ZINC Is Not Commercial 15 (ZINC15) database to identify new ERCC1-XPF endonuclease inhibitors. Our work provides structural insights regarding the binding mode of small molecules targeting the ERCC1-XPF active site that can be used to rationally optimize such compounds. We also propose a set of new potential DNA repair inhibitors to be considered for combination cancer therapy strategies.
机译:DNA切除修复蛋白ERCC-1-DNA修复内切核酸酶XPF(ERCC1-XPF)是异源二聚核酸内切酶,对核苷酸切除修复(NER)DNA修复途径至关重要。尽管其活性是维持健康细胞中基因组完整性所必需的,但ERCC1-XPF可以抵消DNA破坏性疗法的作用,例如癌细胞中基于铂的化学疗法。因此,增强这些疗法效果的一种有前途的方法是将其与小分子结合使用,从而抑制癌细胞的修复机制。目前,尚无可用于人ERCC1-XPF催化位点的结构,该结构可在5'处进行DNA损伤链的金属介导裂解。我们采用了一种同源性建模策略来构建包含活性位点的人类XPF核酸酶结构域的结构模型,并使用分子动力学模拟随后对轨迹进行聚类来提取该域的主要构象。我们研究了靶向活性位点的已知小分子抑制剂的结合模式,以建立药效团模型。然后,我们对ZINC Is Not Commercial 15(ZINC15)数据库进行了虚拟筛选,以鉴定新的ERCC1-XPF核酸内切酶抑制剂。我们的工作提供了有关靶向ERCC1-XPF活性位点的小分子结合模式的结构见解,可用于合理优化此类化合物。我们还提出了一套新的潜在DNA修复抑制剂,可考虑用于联合癌症治疗策略。

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