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首页> 外文期刊>Journal of Computer-Aided Molecular Design >Inhibition of protein interactions: co-crystalized protein-protein interfaces are nearly as good as holo proteins in rigid-body ligand docking
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Inhibition of protein interactions: co-crystalized protein-protein interfaces are nearly as good as holo proteins in rigid-body ligand docking

机译:抑制蛋白质相互作用:共结晶的蛋白质 - 蛋白质界面几乎与刚体配体对接中的Holo蛋白一样好

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摘要

Modulating protein interaction pathways may lead to the cure of many diseases. Known protein-protein inhibitors bind to large pockets on the protein-protein interface. Such large pockets are detected also in the protein-protein complexes without known inhibitors, making such complexes potentially druggable. The inhibitor-binding site is primary defined by the side chains that form the largest pocket in the protein-bound conformation. Low-resolution ligand docking shows that the success rate for the protein-bound conformation is close to the one for the ligand-bound conformation, and significantly higher than for the apo conformation. The conformational change on the protein interface upon binding to the other protein results in a pocket employed by the ligand when it binds to that interface. This proof-of-concept study suggests that rather than using computational pocket-opening procedures, one can opt for an experimentally determined structure of the target co-crystallized protein-protein complex as a starting point for drug design.
机译:调节蛋白质相互作用途径可能导致许多疾病的治愈。已知的蛋白质 - 蛋白质抑制剂与蛋白质 - 蛋白质界面上的大口袋结合。在没有已知抑制剂的情况下,也在蛋白质 - 蛋白质复合物中检测如此大的袋,使得这种络合物潜在可借出。抑制剂结合位点由侧链定义,该侧链在蛋白质结合中形成最大的袋。低分辨率配体对接表明,蛋白质结合的成功率接近于配体结合构象的成功率,并且显着高于APO构象。在与其他蛋白质结合时,蛋白质界面的构象变化导致配体与该界面结合时的口袋。这种概念证明研究表明,而不是使用计算口袋开放程序,可以选择以实验确定的靶共结晶蛋白质复合物的结构作为药物设计的起点。

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