用于表征 KRAS 抑制剂和降解剂的生化和细胞分析套件

Medhanie Kidane, Rene M. Hoffman, Jennifer K. Wolfe-Demarco, Ting-Yu Huang, Chi-Ling Teng, Luis M. Gonzalez Lira, Jennifer Lin-Jones, Gabriel Pallares, Jane E. Lamerdin, Nicole B. Servant, Chun-Yao Lee, Chao-Tsung Yang, Jean A. Bernatchez
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引用次数: 0

摘要

KRAS 是一种重要的致癌驱动因子,在许多癌症中都会发生突变。近年来,通过小分子抑制剂和靶向蛋白降解剂选择性靶向 KRAS 突变体的研究取得了进展,从而推动了该领域研究活动的增长。因此,我们需要新的检测平台来鉴定下一代抑制剂,以提高现有候选药物的效力和选择性,同时避免耐药性的出现。在此,我们介绍了一种新的生化和细胞检测方法,用于评估针对突变型 KRAS 的已知化学实体的结合力和功能。我们的检测板生成了小分子和降解剂对野生型、G12C、G12D 和 G12V KRAS 的选择性概况和定量结合相互作用解离常数,与已发表的数据一致。除了本研究中描述的突变体外,还可以利用这些检测方法,使用过表达的无细胞系统和具有内源蛋白水平的细胞系统,检测其他感兴趣的突变体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Suite of Biochemical and Cell-Based Assays for the Characterization of KRAS Inhibitors and Degraders
KRAS is an important oncogenic driver which is mutated in numerous cancers. Recent advances in the selective targeting of KRAS mutants via small molecule inhibitors and targeted protein degraders have generated an increase in research activity in this area in recent years. As such, there is a need for new assay platforms to profile next generation inhibitors which improve on the potency and selectivity of existing drug candidates, while evading the emergence of resistance. Here, we describe the development of a new panel of biochemical and cell-based assays to evaluate the binding and function of known chemical entities targeting mutant KRAS. Our assay panels generated selectivity profiles and quantitative binding interaction dissociation constants for small molecules and degraders against wild type, G12C, G12D, and G12V KRAS, which were congruent with published data. These assays can be leveraged for additional mutants of interest beyond those described in this study, using both overexpressed cell-free systems and cell-based systems with endogenous protein levels.
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