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Identification of the Antidepressant Vilazodone as an Inhibitor of Inositol Polyphosphate Multikinase by Structure-Based Drug Repositioning

机译:用基于结构的药物重新定位鉴定抗抑郁的vilazodone作为肌醇多磷酸多立糖酶的抑制剂

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摘要

Inositol polyphosphate multikinase (IPMK) is required for the biosynthesis of inositol phosphates (IPs) through the phosphorylation of multiple IP metabolites such as IP3 and IP4. The biological significance of IPMK’s catalytic actions to regulate cellular signaling events such as growth and metabolism has been studied extensively. However, pharmacological reagents that inhibit IPMK have not yet been identified. We employed a structure-based virtual screening of publicly available U.S. Food and Drug Administration-approved drugs and chemicals that identified the antidepressant, vilazodone, as an IPMK inhibitor. Docking simulations and pharmacophore analyses showed that vilazodone has a higher affinity for the ATP-binding catalytic region of IPMK than ATP and we validated that vilazodone inhibits IPMK’s IP kinase activities in vitro . The incubation of vilazodone with NIH3T3-L1 fibroblasts reduced cellular levels of IP5 and other highly phosphorylated IPs without influencing IP4 levels. We further found decreased Akt phosphorylation in vilazodone-treated HCT116 cancer cells. These data clearly indicate selective cellular actions of vilazodone against IPMK-dependent catalytic steps in IP metabolism and Akt activation. Collectively, our data demonstrate vilazodone as a method to inhibit cellular IPMK, providing a valuable pharmacological agent to study and target the biological and pathological processes governed by IPMK.
机译:通过多种IP代谢物如IP3和IP4,需要肌醇多磷酸多磷酸酯(IPMK)来生物合成肌醇磷酸盐(IPS)的生物合成。广泛研究了IPMK催化作用的生物学意义,以调节蜂窝信号传导事件,例如生长和代谢等。然而,尚未确定抑制IPMK的药理试剂。我们雇用了基于结构的虚拟筛选,公开可用的美国食品和药物管理批准的药物和化学品,其鉴定了抗抑郁药,Vilazodone作为IPMK抑制剂。对接模拟和药效线分析表明,Vilazodone对IPMK的ATP结合催化区具有更高的亲和力,而不是ATP,我们验证了VILAZODONE在体外抑制IPMK的IP激酶活性。 Vilazodone与NiH3T3-L1成纤维细胞的孵育降低了IP5和其他高磷酸化IPS的细胞水平,而不会影响IP4水平。我们进一步发现vilazodone治疗的HCT116癌细胞中的AKT磷酸化降低。这些数据清楚地表明Vilazodone对IP代谢和AKT激活的IPMK依赖性催化步骤的选择性细胞作用。集体,我们的数据证明了vilazodone作为抑制细胞IPMK的方法,提供了有价值的药理学剂,用于研究和靶向IPMK治理的生物和病理过程。

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