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靶向抗凋亡蛋白Bcl-xL的槲皮素-氨基酸杂合物的合理设计与构效关系研究

Rational design and structure-activity relationship studies of quercetin-amino acid hybrids targeting the anti-apoptotic protein Bcl-xL.

作者信息

Kellici Tahsin F, Chatziathanasiadou Maria V, Lee Min-Sung, Sayyad Nisar, Geromichalou Elena G, Vrettos Eirinaios I, Tsiailanis Antonis D, Chi Seung-Wook, Geromichalos George D, Mavromoustakos Thomas, Tzakos Andreas G

机构信息

Department of Chemistry, University of Ioannina, Ioannina 45110, Greece.

出版信息

Org Biomol Chem. 2017 Sep 26;15(37):7956-7976. doi: 10.1039/c7ob02045g.

DOI:10.1039/c7ob02045g
PMID:28902204
Abstract

Anti-apoptotic proteins, like the Bcl-2 family proteins, present an important therapeutic cancer drug target. Their activity is orchestrated through neutralization upon interaction of pro-apoptotic protein counterparts that leads to immortality of cancer cells. Therefore, generating compounds targeting these proteins is of immense therapeutic importance. Herein, Induced Fit Docking (IFD) and Molecular Dynamics (MD) simulations were performed to rationally design quercetin analogues that bind in the BH3 site of the Bcl-xL protein. IFD calculations determined their binding cavity while Molecular Mechanics Poisson Boltzmann Surface Area (MM-PBSA) and Molecular Mechanics Generalised Born Surface Area (MM-GBSA) calculations provided an insight into the binding enthalpies of the analogues. The quercetin analogues were synthesized and their binding to Bcl-xL was verified with fluorescence spectroscopy. The binding affinity and the thermodynamic parameters between Bcl-xL and quercetin-glutamic acid were estimated through Isothermal Titration Calorimetry. 2D H-N HSQC NMR chemical shift perturbation mapping was used to chart the binding site of the quercetin analogues in the Bcl-xL that overlapped with the predicted poses generated by both IFD and MD calculations. Furthermore, evaluation of the four conjugates against the prostate DU-145 and PC-3 cancer cell lines, revealed quercetin-glutamic acid and quercetin-alanine as the most potent conjugates bearing the higher cytostatic activity. This pinpoints that the chemical space of natural products can be tailored to exploit new hits for difficult tractable targets such as protein-protein interactions.

摘要

抗凋亡蛋白,如Bcl-2家族蛋白,是重要的癌症治疗药物靶点。它们的活性是通过与促凋亡蛋白相互作用时的中和作用来调控的,这种相互作用导致癌细胞永生。因此,开发针对这些蛋白的化合物具有巨大的治疗意义。在此,进行了诱导契合对接(IFD)和分子动力学(MD)模拟,以合理设计结合在Bcl-xL蛋白BH3位点的槲皮素类似物。IFD计算确定了它们的结合腔,而分子力学泊松玻尔兹曼表面积(MM-PBSA)和分子力学广义玻恩表面积(MM-GBSA)计算则深入了解了类似物的结合焓。合成了槲皮素类似物,并用荧光光谱法验证了它们与Bcl-xL的结合。通过等温滴定量热法估计了Bcl-xL与槲皮素-谷氨酸之间的结合亲和力和热力学参数。二维H-N HSQC NMR化学位移扰动图谱用于绘制槲皮素类似物在Bcl-xL中的结合位点,该位点与IFD和MD计算生成的预测构象重叠。此外,对四种缀合物针对前列腺DU-145和PC-3癌细胞系的评估表明,槲皮素-谷氨酸和槲皮素-丙氨酸是具有最高细胞生长抑制活性的最有效缀合物。这表明天然产物的化学空间可以进行调整,以开发针对蛋白质-蛋白质相互作用等难以处理的靶点的新药物。

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