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Identification and Characterization of Natural and Semisynthetic Quinones as Aurora Kinase Inhibitors

激酶 极光抑制剂 极光激酶 极光激酶B 对接(动物) 有丝分裂 丝氨酸 生物化学 生物 化学 癌症研究 磷酸化 细胞周期 细胞 细胞生物学 主轴装置 医学 细胞分裂 护理部
作者
Muhammad Furqan,Alishba Fayyaz,Farhat Firdous,Hadeeqa Raza,Aishah Bilal,Rahman Shah Zaib Saleem,Syed Shahzad‐ul‐Hussan,Daijie Wang,Fadia S. Youssef,Nawal M. Al Musayeib,Mohamed L. Ashour,Hidayat Hussain,Amir Faisal
出处
期刊:Journal of Natural Products [American Chemical Society]
卷期号:85 (6): 1503-1513 被引量:9
标识
DOI:10.1021/acs.jnatprod.1c01222
摘要

Aurora kinases (Aurora A, B, and C) are a family of serine/threonine kinases that play critical roles during mitotic initiation and progression. Aurora A and B kinases are ubiquitously expressed, and their overexpression and/or amplification in many cancers have been associated with poor prognosis. Several inhibitors that target Aurora kinases A, B, or both have been developed during the past decade with efficacy in different in vitro and in vivo models for a variety of cancers. Recent studies have also identified Aurora A as a synthetic lethal target for different tumor suppressors, including RB1, SMARCA4, and ARID1A, which signifies the need for Aurora-A-selective inhibitors. Here, we report the screening of a small library of quinones (nine naphthoquinones, one orthoquinone, and one anthraquinone) in a biochemical assay for Aurora A kinase that resulted in the identification of several quinones as inhibitors. IC50 determination against Aurora A and B kinases revealed the inhibition of both kinases with selectivity toward Aurora A. Two of the compounds, natural quinone naphthazarin (1) and a pseudo anthraquinone, 2-(chloromethyl)quinizarin (11), potently inhibited the proliferation of various cancer cell lines with IC50 values ranging from 0.16 ± 0.15 to 1.7 ± 0.06 and 0.15 ± 0.04 to 6.3 ± 1.8 μM, respectively. Treatment of cancer cells with these compounds for 24 h resulted in abrogated mitosis and apoptotic cell death. Direct binding of both the compounds with Aurora A kinase was also confirmed through STD NMR analysis. Docking studies predicted the binding of both compounds to the ATP binding pocket of Aurora A kinase. We have, therefore, identified quinones as Aurora kinase inhibitors that can serve as a lead for future drug discovery endeavors.
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