首页> 外文期刊>Journal of Computer-Aided Molecular Design >Computational fragment-based drug design to explore the hydrophobic sub-pocket of the mitotic kinesin Eg5 allosteric binding site
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Computational fragment-based drug design to explore the hydrophobic sub-pocket of the mitotic kinesin Eg5 allosteric binding site

机译:基于计算片段的药物设计,探索有丝分裂驱动蛋白Eg5变构结合位点的疏水亚口袋

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摘要

Eg5, a mitotic kinesin exclusively involved in the formation and function of the mitotic spindle has attracted interest as an anticancer drug target. Eg5 is co-crystallized with several inhibitors bound to its allosteric binding pocket. Each of these occupies a pocket formed by loop 5/helix α2 (L5/α2). Recently designed inhibitors additionally occupy a hydrophobic pocket of this site. The goal of the present study was to explore this hydrophobic pocket with our MED-SuMo fragment-based protocol, and thus discover novel chemical structures that might bind as inhibitors. The MED-SuMo software is able to compare and superimpose similar interaction surfaces upon the whole protein data bank (PDB). In a fragment-based protocol, MED-SuMo retrieves MED-Portions that encode protein-fragment binding sites and are derived from cross-mining protein-ligand structures with libraries of small molecules. Furthermore we have excluded intra-family MED-Portions derived from Eg5 ligands that occupy the hydrophobic pocket and predicted new potential ligands by hybridization that would fill simultaneously both pockets. Some of the latter having original scaffolds and substituents in the hydrophobic pocket are identified in libraries of synthetically accessible molecules by the MED-Search software.
机译:Eg5是一种仅参与有丝分裂纺锤体的形成和功能的有丝分裂驱动蛋白,已经引起了人们的兴趣,将其作为抗癌药物的靶标。 Eg5与与其变构结合口袋结合的几种抑制剂共结晶。这些中的每一个都占据由回路5 /螺旋α2(L5 /α2)形成的袋。最近设计的抑制剂还占据了该位点的疏水口袋。本研究的目的是使用我们基于MED-SuMo片段的方案探索疏水性口袋,从而发现可能结合为抑制剂的新型化学结构。 MED-SuMo软件能够在整个蛋白质数据库(PDB)上比较和叠加相似的相互作用表面。在基于片段的协议中,MED-SuMo检索可编码蛋白质片段结合位点的MED-部分,这些部分是通过与小分子库交叉挖掘蛋白质-配体结构而得到的。此外,我们排除了源自Eg5配体的家族内MED部分,这些部分占据了疏水口袋,并通过杂交预测了同时填充两个口袋的新的潜在配体。后者中的一些在疏水口袋中具有原始支架和取代基是通过MED-Search软件在合成可访问分子的库中识别的。

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