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Mechanistic role of an NS4A peptide cofactor with the truncated NS3 protease of hepatitis C virus: elucidation of the NS4A stimulatory effect via kinetic analysis and inhibitor mapping

机译:NS4A肽辅因子与丙型肝炎病毒截断的NS3蛋白酶的机制作用:通过动力学分析和抑制剂作图阐明NS4A的刺激作用

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摘要

Infection by hepatitis C viruses (HCVs) is a serious medical problem with no broadly effective treatment available for the progression of chronic hepatitis. The catalytic activity of a viral serine protease located in the N-terminal one-third of nonstructural protein 3 (NS3) is required for polyprotein processing at four site-specific junctions. The three-dimensional crystal structure of the NS3-NS4A co-complex [Kim, J. L., Morgenstern, K. A., Lin, C., Fox, T., Dwyer, M. D., Landro, J. A., Chambers, S. P., Markland, W., Lepre, C. A., O'Malley, E. T., Harbeson, S. L., Rice, C. M., Murcko, M. A., Caron, P. R., & Thomson, J. A. (1996) Cell 87, 343-355] delineates a small hydrophobic region within the 54-residue NS4A protein that intercalates with and makes extensive contacts to the core of the protease. The current investigation addresses the mechanism of NS3 protease catalytic activation by NS4A utilizing a small synthetic NS4A peptide (residues 1678-1691 of the virus polyprotein sequence) and the recombinantly expressed protease domain of NS3. The addition of NS4A dramatically increased NS3 kcat and kcat/Km catalytic parameters when measured against small peptide substrates representing the different site-specific junctions of the polyprotein. The catalytic effect of natural and non-natural amino acid substitutions at the P1 position in a 5A/5B peptide substrate was investigated. NS3-NS4A demonstrated a marked catalytic preference for the cysteine residue commonly found in authentic substrates. The pH dependence of the NS3 hydrolysis reaction is not affected by the presence of NS4A. This result suggests that NS4A does not change the pKa values of the active site residues of NS3 protease. A steady state kinetic analysis was performed and indicated that the binding of NS4A and the peptide substrate occurs in an ordered fashion during the catalytic cycle, with NS4A binding first. Two distinct kinetic classes of peptidyl inhibitors based upon the 5A/5B cleavage site were identified. An NS4A-independent class is devoid of prime residues. A second class of inhibitors is NS4A-dependent and contains a natural or non-natural cyclic amino acid substituted for the commonly found P1' residue serine. These inhibitors display an up to 80-fold increase in affinity for NS3 protease in the presence of NS4A. Sequential truncation of prime and P residues from this inhibitor class demonstrated the fact that the P4' and P1' residues are crucial for potent inhibition. The selectivity of this NS4A effect is interpreted using a model of the 5A/5B decapeptide substrate bound to the active site of the NS3-NS4A structure.
机译:丙型肝炎病毒(HCV)感染是一个严重的医学问题,尚无广泛有效的治疗方法可用于治疗慢性肝炎。位于四个非特定结构蛋白3(NS3)N端N端三分之一的病毒丝氨酸蛋白酶的催化活性是多蛋白加工所必需的。 NS3-NS4A复合物的三维晶体结构[Kim,JL,Morgenstern,KA,Lin,C.,Fox,T.,Dwyer,MD,Landro,JA,Chambers,SP,Markland,W., Lepre,CA,O'Malley,ET,Harbeson,SL,Rice,CM,Murcko,MA,Caron,PR和Thomson,JA(1996)Cell 87,343-355]描绘了54个残基中的一个小疏水区域。插入并与蛋白酶核心广泛接触的NS4A蛋白。当前的研究致力于利用小的合成NS4A肽(病毒多蛋白序列的残基1678-1691)和NS3的重组表达的蛋白酶结构域解决NS4A对NS3蛋白酶催化活化的机制。当对代表多蛋白不同位点特异性连接的小肽底物进行测量时,NS4A的添加显着增加了NS3 kcat和kcat / Km催化参数。研究了5A / 5B肽底物P1位置天然和非天然氨基酸取代的催化作用。 NS3-NS4A对真实底物中常见的半胱氨酸残基表现出明显的催化偏好。 NS3水解反应的pH依赖性不受NS4A的存在的影响。该结果表明NS4A不改变NS3蛋白酶的活性位点残基的pKa值。进行了稳态动力学分析,表明NS4A和肽底物的结合在催化循环中以有序的方式发生,其中NS4A首先结合。鉴定了基于5A / 5B裂解位点的两种不同的肽基抑制剂动力学类别。独立于NS4A的类别不含主要残基。第二类抑制剂是NS4A依赖性的,并包含天然或非天然环状氨基酸,取代了常见的P1'残基丝氨酸。这些抑制剂在存在NS4A时对NS3蛋白酶的亲和力最多提高80倍。该抑制剂类别的主要残基和P残基的顺序截断表明,P4'和P1'残基对有效抑制至关重要。使用结合到NS3-NS4A结构的活性位点的5A / 5B十肽底物的模型可以解释这种NS4A效应的选择性。

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