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首页> 外文期刊>Journal of molecular graphics & modelling >Interactions between Bcl-xl and its inhibitors: Insights into ligand design from molecular dynamics simulations
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Interactions between Bcl-xl and its inhibitors: Insights into ligand design from molecular dynamics simulations

机译:Bcl-xl及其抑制剂之间的相互作用:从分子动力学模拟洞察配体设计

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The Bcl-xl protein is a potential drug target for cancer, and it has a relatively flat and flexible binding pocket. ABT263 is one of the most promising molecules that inhibit Bcl-xl, and it was developed from its precursor ABT737 with suitable substitutions. However, the structural and mechanistic implications of those changes have not yet been reported. Molecular dynamics simulation has revealed that the conformational microstates of the complex of Bcl-xl and ABT263 shows heterogeneity at the binding interface with Bcl-xl in contrast to the precise interactions witnessed in case of ABT737. This occurs because not all the functional groups of ABT263 are able to anchor into the binding pocket simultaneously at the time of complexation; leaving at least one group weakly associated every time. The insight into the mechanism shows that, in spite of such mutual exclusivity, the resultant effect becomes beneficial, i.e., becomes more effective than ABT737. Going against the traditional belief, the calculations also confirm that there is no benefit of reshaping the highly flexible binding pocket to allow the ligand to be comfortably accommodated and avoid conflicting orientations of the functional groups, as the destabilization becomes active from other sources. These structural clues and in-silico tests suggest possible avenues for improving the binding affinity of ABT263 through further in-vitro and in-vivo tests. (C) 2015 Elsevier Inc. All rights reserved.
机译:Bcl-xl蛋白是潜在的癌症药物靶标,并且具有相对平坦和灵活的结合袋。 ABT263是抑制Bcl-xl的最有希望的分子之一,它是由其前体ABT737经过适当的取代而开发的。但是,这些变化的结构和机理影响尚未见报道。分子动力学模拟显示,与在ABT737的情况下观察到的精确相互作用相反,Bcl-xl和ABT263的复合物的构象微状态在与Bcl-xl的结合界面上显示出异质性。发生这种情况的原因是,复合时并非所有ABT263的官能团都能同时锚定在结合袋中;每次至少留下一组弱关联。对这种机理的见解表明,尽管有这种相互排斥的影响,但所产生的效果还是有益的,即比ABT737更有效。违背传统观念,该计算还证实重塑高度柔性的结合口袋以使配体被舒适地容纳并避免官能团的方向冲突是没有好处的,因为去稳定作用是由其他来源引起的。这些结构线索和计算机内测试表明,通过进一步的体外和体内测试,可以改善ABT263的结合亲和力。 (C)2015 Elsevier Inc.保留所有权利。

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