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通过计算机模拟和构效关系研究相结合来确定Bcl-xL抑制剂的结合热点。

A combination of in silico and SAR studies to identify binding hot spots of Bcl-xL inhibitors.

作者信息

Levoin Nicolas, Vo Duc Duy, Gautier Fabien, Barillé-Nion Sophie, Juin Philippe, Tasseau Olivier, Grée René

机构信息

Bioprojet-Biotech, 4 rue du Chesnay Beauregard, BP 96205, 35762 Saint Grégoire, France.

Université de Rennes 1, Institut des Sciences Chimiques de Rennes, CNRS UMR 6226, Avenue du Général Leclerc, 35042 Rennes Cedex, France.

出版信息

Bioorg Med Chem. 2015 Apr 15;23(8):1747-57. doi: 10.1016/j.bmc.2015.02.060. Epub 2015 Mar 6.

Abstract

Inhibition of Bcl-2 family protein-protein interactions (PPI) is a very promising direction in cancer chemotherapy. Hence over the last decade, many medicinal chemistry studies endeavoured to discover drug candidates, and a wealth of chemical scaffolds with striking chemical diversity was reported as Bcl-xL inhibitors. This raises the question of whether all these molecules could occupy a unique binding site, or rather discrete pockets of the protein surface. To test if small and chemically diverse Bcl-xL inhibitors are likely to bind a single pocket, and to identify which pocket, we used a battery of computational and modeling approaches. We first checked that the large dataset of Bcl-xL inhibitors we built can actually fit to a universal pharmacophore. Then we defined the probable binding hot spots of interaction through comparison of crystal structures, as well as virtual fragment screening. Finally, new analogues of small polyphenol derivatives were synthesized to precisely probe a hydrogen bond suggested by docking experiments. Bcl-xL inhibition potency of these products confirmed the predicted binding mode. This combination of X-ray structure exploration, molecular modeling studies and medicinal chemistry supports that all these small Bcl-xL inhibitors occupy the same hot spot of interaction. The identification of this binding site should help the design and optimization of small PPI Bcl-xL inhibitors.

摘要

抑制Bcl-2家族蛋白-蛋白相互作用(PPI)是癌症化疗中一个非常有前景的方向。因此,在过去十年中,许多药物化学研究致力于发现候选药物,并且报道了大量具有显著化学多样性的化学骨架作为Bcl-xL抑制剂。这就提出了一个问题,即所有这些分子是占据一个独特的结合位点,还是蛋白质表面的离散口袋。为了测试化学结构多样的小分子Bcl-xL抑制剂是否可能结合单个口袋,并确定是哪个口袋,我们使用了一系列计算和建模方法。我们首先检查了我们构建并得到的Bcl-xL抑制剂的大型数据集实际上是否符合通用药效团。然后,通过晶体结构比较以及虚拟片段筛选,我们定义了可能的相互作用热点。最后,合成了小多酚衍生物的新类似物,以精确探测对接实验所提示的氢键。这些产物的Bcl-xL抑制效力证实了预测的结合模式。这种X射线结构探索、分子建模研究和药物化学的结合支持了所有这些小分子Bcl-xL抑制剂占据相同的相互作用热点。该结合位点的确定应有助于设计和优化小分子PPI Bcl-xL抑制剂。

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