Department of Chemistry, Simon Fraser University, 8888 University Drive, Burnaby, Canada.
Inserm UMR_S 1113, Molecular Mechanisms of Stress Response and Pathologies, Université de Strasbourg, Strasbourg, France.
Chemistry. 2018 Dec 3;24(67):17734-17742. doi: 10.1002/chem.201802677. Epub 2018 Nov 9.
The p53 protein plays a major role in cancer prevention, and over 50 % of cancer diagnoses can be attributed to p53 malfunction. The common p53 mutation Y220C causes local protein unfolding, aggregation, and can result in a loss of Zn in the DNA-binding domain. Structural analysis has shown that this mutant creates a surface site that can be stabilized using small molecules, and herein a multifunctional approach to restore function to p53-Y220C is reported. A series of compounds has been designed that contain iodinated phenols aimed for interaction and stabilization of the p53-Y220C surface cavity, and Zn-binding fragments for metallochaperone activity. Their Zn-binding affinity was characterized using spectroscopic methods and demonstrate the ability of compounds L4 and L5 to increase intracellular levels of Zn in a p53-Y220C-mutant cell line. The in vitro cytotoxicity of our compounds was initially screened by the National Cancer Institute (NCI-60), followed by testing in three stomach cancer cell lines with varying p53 status', including AGS (WTp53), MKN1 (V143A), and NUGC3 (Y220C). Our most promising ligand, L5, is nearly 3-fold more cytotoxic than cisplatin in a large number of cell lines. The impressive cytotoxicity of L5 is further maintained in a NUGC3 3D spheroid model. L5 also induces Y220C-specific apoptosis in a cleaved caspase-3 assay, reduces levels of unfolded mutant p53, and recovers p53 transcriptional function in the NUGC3 cell line. These results show that these multifunctional scaffolds have the potential to restore wild-type function in mutant p53-Y220C.
p53 蛋白在癌症预防中起着重要作用,超过 50%的癌症诊断可以归因于 p53 功能障碍。常见的 p53 突变 Y220C 导致局部蛋白质展开、聚集,并可能导致 DNA 结合域中的 Zn 丢失。结构分析表明,这种突变体创造了一个表面位点,可以使用小分子稳定,在此报告了一种恢复 p53-Y220C 功能的多功能方法。设计了一系列包含碘代酚的化合物,旨在与 p53-Y220C 表面腔相互作用和稳定,并具有 Zn 结合片段的金属伴侣活性。使用光谱方法表征了它们的 Zn 结合亲和力,并证明了化合物 L4 和 L5 能够增加 p53-Y220C 突变细胞系中细胞内的 Zn 水平。我们的化合物的体外细胞毒性最初通过国家癌症研究所 (NCI-60) 进行筛选,然后在三种具有不同 p53 状态的胃癌细胞系中进行测试,包括 AGS(WTp53)、MKN1(V143A)和 NUGC3(Y220C)。我们最有前途的配体 L5 在大量细胞系中的细胞毒性比顺铂高近 3 倍。L5 在 NUGC3 3D 球体模型中的细胞毒性也得到了很好的维持。L5 还在半胱天冬酶-3 切割测定中诱导 Y220C 特异性凋亡,降低未折叠突变 p53 的水平,并恢复 NUGC3 细胞系中的 p53 转录功能。这些结果表明,这些多功能支架有可能恢复 p53-Y220C 中的野生型功能。