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Identification of the FirstInhibitor of the GBP1:PIM1 Interaction. Implications for the Developmentof a New Class of Anticancer Agents against Paclitaxel Resistant CancerCells

机译:鉴定第一个GBP1:PIM1相互作用的抑制剂。对发展的影响类新型抗紫杉醇抗癌药物的研究细胞

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摘要

Class III β-tubulin plays a prominent role in the development of drug resistance to paclitaxel by allowing the incorporation of the GBP1 GTPase into microtubules. Once in the cytoskeleton, GBP1 binds to prosurvival kinases such as PIM1 and initiates a signaling pathway that induces resistance to paclitaxel. Therefore, the inhibition of the GBP1:PIM1 interaction could potentially revert resistance to paclitaxel. A panel of 44 4-azapodophyllotoxin derivatives was screened in the NCI-60 cell panel. The result is that 31 are active and the comparative analysis demonstrated specific activity in paclitaxel-resistant cells. Using surface plasmon resonance, we were able to prove that NSC756093 is a potent in vitro inhibitor of the GBP1:PIM1 interaction and that this property is maintained in vivo in ovarian cancer cells resistant to paclitaxel. Through bioinformatics, molecular modeling, and mutagenesis studies, we identified the putative NSC756093 binding site at the interface between the helical and the LG domain of GBP1. According to our results by binding to this site, the NSC756093 compound isable to stabilize a conformation of GBP1 not suitable for bindingto PIM1.
机译:通过允许GBP1 GTPase掺入微管,III类β-微管蛋白在对紫杉醇的耐药性发展中起着重要作用。一旦进入细胞骨架,GBP1就会与生存激酶(如PIM1)结合,并启动诱导对紫杉醇耐药的信号传导途径。因此,GBP1:PIM1相互作用的抑制可能会恢复对紫杉醇的耐药性。在NCI-60细胞组中筛选了一组44种4-氮杂鬼臼毒素衍生物。结果是31个细胞处于活跃状态,而比较分析表明,紫杉醇耐药细胞具有特定的活性。使用表面等离子体共振,我们能够证明NSC756093是有效的GBP1:PIM1相互作用的体外抑制剂,并且该特性在体内对紫杉醇具有抗性的卵巢癌细胞中得以维持。通过生物信息学,分子建模和诱变研究,我们在GBP1的螺旋结构和LG结构域之间的界面处确定了推定的NSC756093结合位点。根据结合该位点的结果,NSC756093化合物为能够稳定不适合结合的GBP1构象到PIM1。

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