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BcL-xL Conformational Changes upon Fragment Binding Revealed by NMR

机译:BcL xl构象变化的核磁共振揭示的片段结合。

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摘要

Protein-protein interactions represent difficult but increasingly important targets for the design of therapeutic compounds able to interfere with biological processes. Recently, fragment-based strategies have been proposed as attractive approaches for the elaboration of protein-protein surface inhibitors from fragment-like molecules. One major challenge in targeting protein-protein interactions is related to the structural adaptation of the protein surface upon molecular recognition. Methods capable of identifying subtle conformational changes of proteins upon fragment binding are therefore required at the early steps of the drug design process. In this report we present a fast NMR method able to probe subtle conformational changes upon fragment binding. The approach relies on the comparison of experimental fragment-induced Chemical Shift Perturbation (CSP) of amine protons to CSP simulated for a set of docked fragment poses, considering the ring-current effect from fragment binding. We illustrate the method by the retrospective analysis of the complex between the anti-apoptotic Bcl-xL protein and the fragment 4′-fluoro-[1,1′-biphenyl]-4-carboxylic acid that was previously shown to bind one of the Bcl-xL hot spots. The CSP-based approach shows that the protein undergoes a subtle conformational rearrangement upon interaction, for residues located in helices 2, 3 and the very beginning of 5. Our observations are corroborated by residual dipolar coupling measurements performed on the free and fragment-bound forms of the Bcl-xL protein. These NMR-based results are in total agreement with previous molecular dynamic calculations that evidenced a high flexibility of Bcl-xL around the binding site. Here we show that CSP of protein amine protons are useful and reliable structural probes. Therefore, we propose to use CSP simulation to assess protein conformational changes upon ligand binding in the fragment-based drug design approach.
机译:蛋白质-蛋白质相互作用是设计能够干扰生物过程的治疗性化合物的困难但日益重要的目标。近来,基于片段的策略已被提出作为从片段样分子加工蛋白质-蛋白质表面抑制剂的有吸引力的方法。靶向蛋白质-蛋白质相互作用的一项主要挑战与分子识别后蛋白质表面的结构适应性有关。因此,在药物设计过程的早期阶段,需要能够识别片段结合后蛋白质细微构象变化的方法。在本报告中,我们提出了一种快速NMR方法,该方法能够探测片段结合后细微的构象变化。该方法依赖于比较实验性片段诱导的胺质子的化学位移扰动(CSP)与针对一组对接片段姿势模拟的CSP的比较,考虑到片段结合的环流效应。我们通过对抗凋亡Bcl-xL蛋白与片段4'-氟-[1,1'-联苯] -4-羧酸之间的复合物进行回顾性分析来说明该方法,该复合物先前已显示出与其中一种结合。 Bcl-xL热点。基于CSP的方法表明,蛋白质相互作用时会发生微妙的构象重排,位于螺旋2、3和5的最开始的残基。通过对游离形式和片段结合形式进行的残留偶极偶合测量,我们的观察结果得到了证实。 Bcl-xL蛋白的表达。这些基于NMR的结果与以前的分子动力学计算完全吻合,后者证明了Bcl-xL在结合位点附近具有很高的柔韧性。在这里,我们证明蛋白质胺质子的CSP是有用且可靠的结构探针。因此,我们建议在基于片段的药物设计方法中使用CSP模拟评估配体结合后的蛋白质构象变化。

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