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首页> 外文期刊>Journal of molecular recognition: JMR >Mechanistic and kinetic characterization of hepatitis C virus NS3 protein interactions with NS4A and protease inhibitors
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Mechanistic and kinetic characterization of hepatitis C virus NS3 protein interactions with NS4A and protease inhibitors

机译:丙型肝炎病毒NS3蛋白与NS4A和蛋白酶抑制剂相互作用的机理和动力学表征

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摘要

The mechanism and kinetics of the interactions between ligands and immobilized full-length hepatitis C virus (HCV) genotype 1a NS3 have been characterized by SPR biosensor technology. The NS3 interactions for a series of NS3 protease inhibitors as well as for the NS4A cofactor, represented by a peptide corresponding to the sequence interacting with the enzyme, were found to be heterogeneous. It may represent interactions with two stable conformations of the protein. The NS3-NS4A interaction consisted of a high-affinity (K D = 50 nM) and a low-affinity (KD = 2 ?μM) interaction, contributing equally to the overall binding. By immobilizing NS3 alone or together with NS4A it was shown that all inhibitors had a higher affinity for NS3 in the presence of NS4A. NS4A thus has a direct effect on the binding of inhibitors to NS3 and not only on catalysis. As predicted, the mechanism-based inhibitor VX 950 exhibited a time-dependent interaction with a slow formation of a stable complex. BILN 2061 or ITMN-191 showed no signs of time-dependent interactions, but ITMN-191 had the highest affinity of the tested compounds, with both the slowest dissociation (koff) and fastest association rate, closely followed by BILN 2061. The koff for the inhibitors correlated strongly with their NS3 protease inhibitory effect as well as with their effect on replication of viral proteins in replicon cell cultures, confirming the relevance of the kinetic data. This approach for obtaining kinetic and mechanistic data for NS3 protease inhibitor and cofactor interactions is expected to be of importance for understanding the characteristics of HCV NS3 functionality as well as for anti-HCV lead discovery and optimization.
机译:配体和固定的全长丙型肝炎病毒(HCV)基因型1a NS3之间相互作用的机理和动力学已通过SPR生物传感器技术进行了表征。发现一系列NS3蛋白酶抑制剂以及NS4A辅因子的NS3相互作用是异质的,所述NS4A辅因子以对应于与酶相互作用的序列的肽表示。它可能代表与蛋白质的两个稳定构象的相互作用。 NS3-NS4A相互作用由高亲和力(K D = 50 nM)和低亲和力(KD = 2?μM)相互作用组成,同样有助于整体结合。通过单独或与NS4A一起固定NS3,表明所有抑制剂在NS4A存在下对NS3的亲和力更高。因此,NS4A对抑制剂与NS3的结合具有直接影响,而不仅对催化具有直接作用。如预期的那样,基于机理的抑制剂VX 950表现出与时间有关的相互作用,并缓慢形成稳定的复合物。 BILN 2061或ITMN-191没有显示出时间依赖性相互作用的迹象,但ITMN-191具有测试化合物的最高亲和力,具有最慢的解离(koff)和最快的缔合速率,紧随其后的是BILN 2061。抑制剂与它们的NS3蛋白酶抑制作用以及它们对复制子细胞培养物中病毒蛋白复制的作用密切相关,从而证实了动力学数据的相关性。预期这种获得NS3蛋白酶抑制剂和辅因子相互作用的动力学和机理数据的方法对于理解HCV NS3功能的特性以及抗HCV导联的发现和优化非常重要。

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