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A Computational Approach to Analyze the Mechanism of Action of the Kinase Inhibitor Bafetinib

机译:分析激酶抑制剂巴非替尼作用机理的一种计算方法

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Prediction of drug action in human cells is a major challenge in biomedical research. Additionally, there is strong interest in finding new applications for approved drugs and identifying potential side effects. We present a computational strategy to predict mechanisms, risks and potential new domains of drug treatment on the basis of target profiles acquired through chemical proteomics. Functional protein-protein interaction networks that share one biological function are constructed and their crosstalk with the drug is scored regarding function disruption. We apply this procedure to the target profile of the second-generation BCR-ABL inhibitor bafetinib which is in development for the treatment of imatinib-resistant chronic myeloid leukemia. Beside the well known effect on apoptosis, we propose potential treatment of lung cancer and IGF1R expressing blast crisis.
机译:人体细胞中药物作用的预测是生物医学研究中的主要挑战。此外,人们对于寻找批准药物的新应用并确定潜在的副作用非常感兴趣。我们提出了一种计算策略,可以根据通过化学蛋白质组学获得的目标概况来预测药物治疗的机制,风险和潜在的新领域。构建具有一种生物学功能的功能性蛋白质-蛋白质相互作用网络,并就功能破坏对它们与药物的串扰进行评分。我们将此程序应用于第二代BCR-ABL抑制剂bafetinib的目标概况,该药物正在开发中,用于治疗对伊马替尼耐药的慢性粒细胞白血病。除了对细胞凋亡的众所周知的影响,我们提出了潜在的治疗肺癌和表达胚细胞危机的IGF1R的方法。

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