Rationally Designed PI3Kα Mutants to Mimic ATR and Their Use to Understand Binding Specificity of ATR Inhibitors

突变体 生物化学 药物发现 血浆蛋白结合 结合位点 PI3K/AKT/mTOR通路 化学 生物 细胞生物学 信号转导 基因
作者
Yipin Lu,Mark Knapp,Kenneth Crawford,Robert Warne,R.A. Elling,Kelly Yan,Michael Doyle,Gwynn Pardee,Li Zhang,Sylvia Ma,Mulugeta Mamo,Elizabeth Ornelas,Yue Pan,Dirksen E. Bussiere,Johanna M. Jansen,Isabel Zaror,Albert Lai,Paul A. Barsanti,Janet Sim
出处
期刊:Journal of Molecular Biology [Elsevier BV]
卷期号:429 (11): 1684-1704 被引量:26
标识
DOI:10.1016/j.jmb.2017.04.006
摘要

ATR, a protein kinase in the PIKK family, plays a critical role in the cell DNA-damage response and is an attractive anticancer drug target. Several potent and selective inhibitors of ATR have been reported showing significant antitumor efficacy, with most advanced ones entering clinical trials. However, due to the absence of an experimental ATR structure, the determinants contributing to ATR inhibitors' potency and specificity are not well understood. Here we present the mutations in the ATP-binding site of PI3Kα to progressively transform the pocket to mimic that of ATR. The generated PI3Kα mutants exhibit significantly improved affinity for selective ATR inhibitors in multiple chemical classes. Furthermore, we obtained the X-ray structures of the PI3Kα mutants in complex with the ATR inhibitors. The crystal structures together with the analysis on the inhibitor affinity profile elucidate the roles of individual amino acid residues in the binding of ATR inhibitors, offering key insights for the binding mechanism and revealing the structure features important for the specificity of ATR inhibitors. The ability to obtain structural and binding data for these PI3Kα mutants, together with their ATR-like inhibitor binding profiles, makes these chimeric PI3Kα proteins valuable model systems for structure-based inhibitor design.

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