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首页> 外文期刊>Journal of Medicinal Chemistry >Peptide inhibitors of West Nile NS3 protease: SAR study of tetrapeptide aldehyde inhibitors
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Peptide inhibitors of West Nile NS3 protease: SAR study of tetrapeptide aldehyde inhibitors

机译:西尼罗河NS3蛋白酶的肽抑制剂:四肽醛抑制剂的SAR研究

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A series of inhibitors related to the benzoyl-norleucine-lysine-arginine-arginine (Bz-nKRR) tetrapeptide aldehyde was synthesized. When evaluated against the West Nile virus (WNV) NS3 protease, the measured IC50 ranges from similar to 1 to 200 mu M. Concurrently, a modeling study using the recently published crystal structure of the West Nile NS3/NS2B protease complex (pdb code 2FP7) was conducted. We found that the crystal structure is relevant in explaining the observed SAR for this series of tetrapeptides, with the S1 and S2 pockets being the key peptide recognition sites. In general, a residue capable of both pi-stacking and hydrogen bonding is favored in the S1 pocket, while a positively charged residue is preferred in the S2 pocket. This study not only confirms the importance of the NS2B domain in substrate-based inhibitor binding of WNV, it also suggests that the crystal structure would provide useful guidance in the drug discovery process of related Flavivirus proteases, given the high degree of homology.
机译:合成了一系列与苯甲酰基-正亮氨酸-赖氨酸-精氨酸-精氨酸(Bz-nKRR)四肽醛有关的抑制剂。当针对西尼罗河病毒(WNV)NS3蛋白酶进行评估时,测得的IC50范围约为1至200μM。同时,使用最近发布的西尼罗河NS3 / NS2B蛋白酶复合物的晶体结构(pdb代码2FP7)进行建模研究)进行。我们发现晶体结构与解释该系列四肽的SAR有关,其中S1和S2口袋是关键的肽识别位点。通常,在S1袋中有利于同时进行π堆积和氢键结合的残基,而在S2袋中优选带正电荷的残基。这项研究不仅证实了NS2B结构域在WNV的基于底物的抑制剂结合中的重要性,而且还表明,鉴于高度的同源性,其晶体结构将在相关黄病毒蛋白酶的药物发现过程中提供有用的指导。

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