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分子建模研究 c-KIT/PDGFRα 双重抑制剂治疗胃肠道间质瘤。

Molecular Modeling Study of c-KIT/PDGFRα Dual Inhibitors for the Treatment of Gastrointestinal Stromal Tumors.

机构信息

Department of Biomedical Sciences, College of Medicine, Chosun University, Gwangju 501-759, Korea.

Department of Cellular Molecular Medicine, College of Medicine, Chosun University, Gwangju 501-759, Korea.

出版信息

Int J Mol Sci. 2020 Nov 3;21(21):8232. doi: 10.3390/ijms21218232.

Abstract

Gastrointestinal stromal tumors (GISTs) are the most common Mesenchymal Neoplasm of the gastrointestinal tract. The tumorigenesis of GISTs has been associated with the gain-of-function mutation and abnormal activation of the stem cell factor receptor (c-KIT) and platelet-derived growth factor receptor alpha (PDGFRα) kinases. Hence, inhibitors that target c-KIT and PDGFRα could be a therapeutic option for the treatment of GISTs. The available approved c-KIT/PDGFRα inhibitors possessed low efficacy with off-target effects, which necessitated the development of potent inhibitors. We performed computational studies of 48 pyrazolopyridine derivatives that showed inhibitory activity against c-KIT and PDGFRα to study the structural properties important for inhibition of both the kinases. The derivative of phenylurea, which has high activities for both c-KIT (pIC = 8.6) and PDGFRα (pIC = 8.1), was used as the representative compound for the dataset. Molecular docking and molecular dynamics simulation (100 ns) of compound was performed. Compound showed the formation of hydrogen bonding with Cys673, Glu640, and Asp810 in c-KIT, and Cys677, Glu644, and Asp836 in PDGFRα. The results also suggested that Thr670/T674 substitution in c-KIT/PDGFRα induced conformational changes at the binding site of the receptors. Three-dimensional quantitative structure-activity relationship (3D-QSAR) models were developed based on the inhibitors. Contour map analysis showed that electropositive and bulky substituents at the para-position and the meta-position of the benzyl ring of compound was favorable and may increase the inhibitory activity against both c-KIT and PDGFRα. Analysis of the results suggested that having bulky and hydrophobic substituents that extend into the hydrophobic pocket of the binding site increases the activity for both c-KIT and PDGFRα. Based on the contour map analysis, 50 compounds were designed, and the activities were predicted. An evaluation of binding free energy showed that eight of the designed compounds have potential binding affinity with c-KIT/PDGFRα. Absorption, distribution, metabolism, excretion and toxicity (ADMET) and synthetic feasibility tests showed that the designed compounds have reasonable pharmaceutical properties and synthetic feasibility. Further experimental study of the designed compounds is recommended. The structural information from this study could provide useful insight into the future development of c-KIT and PDGFRα inhibitors.

摘要

胃肠道间质瘤(GISTs)是胃肠道最常见的间叶性肿瘤。GIST 的肿瘤发生与干细胞因子受体(c-KIT)和血小板衍生生长因子受体α(PDGFRα)激酶的功能获得性突变和异常激活有关。因此,靶向 c-KIT 和 PDGFRα 的抑制剂可能是治疗 GIST 的一种治疗选择。现有的批准用于治疗 GIST 的 c-KIT/PDGFRα 抑制剂具有疗效低和脱靶效应,这需要开发有效的抑制剂。我们对 48 种吡唑并吡啶衍生物进行了计算研究,这些衍生物显示出对 c-KIT 和 PDGFRα 的抑制活性,以研究对两种激酶的抑制具有重要意义的结构特性。具有高 c-KIT(pIC = 8.6)和 PDGFRα(pIC = 8.1)活性的苯甲脒衍生物被用作数据集的代表性化合物。对化合物进行了分子对接和分子动力学模拟(100 ns)。化合物与 c-KIT 中的 Cys673、Glu640 和 Asp810 以及 PDGFRα 中的 Cys677、Glu644 和 Asp836 形成氢键。结果还表明,c-KIT/PDGFRα 中的 Thr670/T674 取代诱导受体结合部位的构象变化。基于抑制剂构建了三维定量构效关系(3D-QSAR)模型。等高线图分析表明,化合物苯甲脒苄基环对位和间位带有正电荷和大体积取代基有利于增加对 c-KIT 和 PDGFRα 的抑制活性。结果分析表明,具有较大体积和疏水性取代基并延伸到结合部位的疏水口袋中会增加对 c-KIT 和 PDGFRα 的活性。基于等高线图分析,设计了 50 种化合物,并预测了它们的活性。结合自由能评估表明,设计的 8 种化合物具有与 c-KIT/PDGFRα 结合的潜力。吸收、分布、代谢、排泄和毒性(ADMET)和合成可行性测试表明,设计的化合物具有合理的药物性质和合成可行性。建议进一步对设计的化合物进行实验研究。本研究的结构信息可为未来 c-KIT 和 PDGFRα 抑制剂的开发提供有用的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c340/7662224/da9032f8cc99/ijms-21-08232-g001.jpg

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