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The interdomain interface in bifunctional enzyme protein 3/4A (NS3/4A) regulates protease and helicase activities

机译:双功能酶蛋白3 / 4A(NS3 / 4A)中的域间界面调节蛋白酶和解旋酶活性

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摘要

Hepatitis C (HCV) protein 3/4A (NS3/4A) is a bifunctional enzyme comprising two separate domains with protease and helicase activities, which are essential for viral propagation. Both domains are stable and have enzymatic activity separately, and the relevance and implications of having protease and helicase together as a single protein remains to be explored. Altered in vitro activities of isolated domains compared with the full-length NS3/4A protein suggest the existence of interdomain communication. The molecular mechanism and extent of this communication was investigated by probing the domain–domain interface observed in HCV NS3/4A crystal structures. We found in molecular dynamics simulations that the two domains of NS3/4A are dynamically coupled through the interface. Interestingly, mutations designed to disrupt this interface did not hinder the catalytic activities of either domain. In contrast, substrate cleavage and DNA unwinding by these mutants were mostly enhanced compared with the wild-type protein. Disrupting the interface did not significantly alter RNA unwinding activity; however, the full-length protein was more efficient in RNA unwinding than the isolated protease domain, suggesting a more direct role in RNA processing independent of the interface. Our findings suggest that HCV NS3/4A adopts an “extended” catalytically active conformation, and interface formation acts as a switch to regulate activity. We propose a unifying model connecting HCV NS3/4A conformational states and protease and helicase function, where interface formation and the dynamic interplay between the two enzymatic domains of HCV NS3/4A potentially modulate the protease and helicase activities in vivo.
机译:丙型肝炎(HCV)蛋白3 / 4A(NS3 / 4A)是一种双功能酶,包含两个具有蛋白酶和解旋酶活性的独立域,这对病毒繁殖至关重要。两个结构域都是稳定的并且分别具有酶活性,并且将蛋白酶和解旋酶一起作为单个蛋白质的相关性和意义仍有待探索。与全长NS3 / 4A蛋白相比,离体结构域的体外活性发生了变化,这表明存在域间通讯。通过探测在HCV NS3 / 4A晶体结构中观察到的域-域界面,研究了这种交流的分子机制和程度。我们在分子动力学模拟中发现,NS3 / 4A的两个结构域通过界面动态耦合。有趣的是,旨在破坏该界面的突变并不妨碍任何一个域的催化活性。相反,与野生型蛋白相比,这些突变体对底物的切割和DNA的解链作用大大增强。破坏界面并没有显着改变RNA解链活性。然而,全长蛋白比分离的蛋白酶结构域在解链RNA方面更有效,表明在RNA加工中更直接的作用独立于界面。我们的发现表明,HCV NS3 / 4A具有“扩展的”催化活性构象,并且界面形成可作为调节活性的开关。我们提出了一个连接HCV NS3 / 4A构象状态与蛋白酶和解旋酶功能的统一模型,其中接口形成和HCV NS3 / 4A的两个酶结构域之间的动态相互作用可能在体内调节蛋白酶和解旋酶的活性。

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