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Targeting the cryptic sites: NMR-based strategy to improve protein druggability by controlling the conformational equilibrium

机译:针对隐秘网站:基于NMR的策略来通过控制构象平衡来改善蛋白质可拆卸性

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Cryptic ligand binding sites, which are not evident in the unligated structures, are beneficial in tackling with difficult but attractive drug targets, such as protein-protein interactions (PPIs). However, cryptic sites have thus far not been rationally pursued in the early stages of drug development. Here, we demonstrated by nuclear magnetic resonance that the cryptic site in Bcl-xL exists in a conformational equilibrium between the open and closed conformations under the unligated condition. While the fraction of the open conformation in the unligated wild-type Bcl-xL is estimated to be low, F143W mutation that is distal from the ligand binding site can substantially elevate the population. The F143W mutant showed a higher hit rate in a phage-display peptide screening, and the hit peptide bound to the cryptic site of the wild-type Bcl-xL. Therefore, by controlling the conformational equilibrium in the cryptic site, the opportunity to identify a PPI inhibitor could be improved.
机译:在未固化的结构中不明显的隐秘配体结合位点是有益的,这些位点与困难但有吸引力的药物靶标进行处理,例如蛋白质 - 蛋白质相互作用(PPI)。然而,隐藏地点迄今未经理于在药物发育的早期阶段没有合理地追求。在这里,我们通过核磁共振证明了BCL-XL中的隐蔽位点存在于在未经固化条件下的开放和闭合构象之间的构象平衡。虽然估计未固化的野生型BCL-XL中的开放构象的级分估计是低的,但与配体结合位点远离的F143W突变可以显着提高群体。 F143W突变体在噬菌体展示肽筛选中显示出更高的击中率,以及与野生型BCL-XL的隐蔽位点结合的麦芽肽。因此,通过控制隐秘部位的构象平衡,可以提高鉴定PPI抑制剂的机会。

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