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计算机辅助设计小分子抑制剂靶向 ERCC1-XPF 蛋白-蛋白相互作用。

Computer-aided drug design of small molecule inhibitors of the ERCC1-XPF protein-protein interaction.

机构信息

Department of Physics, University of Alberta, Edmonton, AB, Canada.

Department of Chemistry, University of Alberta, Edmonton, AB, Canada.

出版信息

Chem Biol Drug Des. 2020 Apr;95(4):460-471. doi: 10.1111/cbdd.13660. Epub 2020 Jan 20.

Abstract

The heterodimer of DNA excision repair protein ERCC-1 and DNA repair endonuclease XPF (ERCC1-XPF) is a 5'-3' structure-specific endonuclease essential for the nucleotide excision repair (NER) pathway, and it is also involved in other DNA repair pathways. In cancer cells, ERCC1-XPF plays a central role in repairing DNA damage induced by chemotherapeutics including platinum-based and cross-linking agents; thus, its inhibition is a promising strategy to enhance the effect of these therapies. In this study, we rationally modified the structure of F06, a small molecule inhibitor of the ERCC1-XPF interaction (Molecular Pharmacology, 84, 2013 and 12), to improve its binding to the target. We followed a multi-step computational approach to investigate potential modification sites of F06, rationally design and rank a library of analogues, and identify candidates for chemical synthesis and in vitro testing. Our top compound, B5, showed an improved half-maximum inhibitory concentration (IC ) value of 0.49 µM for the inhibition of ERCC1-XPF endonuclease activit, and lays the foundation for further testing and optimization. Also, the computational approach reported here can be used to develop DNA repair inhibitors targeting the ERCC1-XPF complex.

摘要

DNA 切除修复蛋白 ERCC-1 和 DNA 修复内切酶 XPF(ERCC1-XPF)异二聚体是核苷酸切除修复(NER)途径中必需的 5'-3'结构特异性内切酶,它还参与其他 DNA 修复途径。在癌细胞中,ERCC1-XPF 在修复包括铂类和交联剂在内的化疗药物诱导的 DNA 损伤方面发挥核心作用;因此,抑制它是增强这些疗法效果的一种很有前途的策略。在这项研究中,我们对小分子 ERCC1-XPF 相互作用抑制剂 F06(Molecular Pharmacology, 84, 2013 和 12)的结构进行了合理修饰,以提高其与靶标的结合能力。我们采用了多步计算方法来研究 F06 的潜在修饰位点,合理设计和排列了一系列类似物文库,并确定了用于化学合成和体外测试的候选物。我们的顶级化合物 B5 对 ERCC1-XPF 内切酶活性的抑制作用的半最大抑制浓度(IC )值改善为 0.49 µM,为进一步的测试和优化奠定了基础。此外,这里报道的计算方法可用于开发针对 ERCC1-XPF 复合物的 DNA 修复抑制剂。

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