首页> 外文期刊>Journal of Computer-Aided Molecular Design >Discovery of small molecule inhibitors of ubiquitin-like poxvirus proteinase I7L using homology modeling and covalent docking approaches
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Discovery of small molecule inhibitors of ubiquitin-like poxvirus proteinase I7L using homology modeling and covalent docking approaches

机译:使用同源建模和共价对接方法发现泛素样痘病毒蛋白酶I7L的小分子抑制剂

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摘要

Essential for viral replication and highly conserved among poxviridae, the vaccinia virus I7L ubiquitin-like proteinase (ULP) is an attractive target for development of smallpox antiviral drugs. At the same time, the I7L proteinase exemplifies several interesting challenges from the rational drug design perspective. In the absence of a published I7L X-ray structure, we have built a detailed 3D model of the I7L ligand binding site (S2-S2' pocket) based on exceptionally high structural conservation of this site in proteases of the ULP family. The accuracy and limitations of this model were assessed through comparative analysis of available X-ray structures of ULPs, as well as energy based conformational modeling. The 3D model of the I7L ligand binding site was used to perform covalent docking and VLS of a comprehensive library of about 230,000 available ketone and aldehyde compounds. Out of 456 predicted ligands, 97 inhibitors of I7L proteinase activity were confirmed in biochemical assays (similar to 20% overall hit rate). These experimental results both validate our I7L ligand binding model and provide initial leads for rational optimization of poxvirus I7L proteinase inhibitors. Thus, fragments predicted to bind in the prime portion of the active site can be combined with fragments on non-prime side to yield compounds with improved activity and specificity.
机译:痘苗病毒I7L泛素样蛋白酶(ULP)是病毒复制所必需的,在痘病毒科中高度保守,是天花抗病毒药物开发的诱人靶标。同时,从合理的药物设计角度来看,I7L蛋白酶例证了几个有趣的挑战。在没有公开的I7L X射线结构的情况下,我们基于ULP家族蛋白酶中I7L配体结合位点(S2-S2'口袋)的极高结构保守性,建立了详细的3D模型。该模型的准确性和局限性是通过对ULP可用X射线结构的比较分析以及基于能量的构象建模进行评估的。 I7L配体结合位点的3D模型用于执行约23万种可用的酮和醛化合物的全面文库的共价对接和VLS。在456个预测的配体中,在生化分析中确认了97种I7L蛋白酶活性抑制剂(近似于总命中率的20%)。这些实验结果既验证了我们的I7L配体结合模型,又为合理优化痘病毒I7L蛋白酶抑制剂提供了初步线索。因此,预计结合在活性位点的主要部分中的片段可以与非主要部分上的片段结合以产生具有改善的活性和特异性的化合物。

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