首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Hydrogen/Deuterium Exchange Kinetics Demonstrate Long Range Allosteric Effects of Thumb Site 2 Inhibitors of Hepatitis C Viral RNA-dependent RNA Polymerase
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Hydrogen/Deuterium Exchange Kinetics Demonstrate Long Range Allosteric Effects of Thumb Site 2 Inhibitors of Hepatitis C Viral RNA-dependent RNA Polymerase

机译:氢/氘交换动力学表明拇指部位2丙型肝炎病毒RNA依赖性RNA聚合酶抑制剂的远距离变构作用

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摘要

New nonnucleoside analogs are being developed as part of a multi-drug regimen to treat hepatitis C viral infections. Particularly promising are inhibitors that bind to the surface of the thumb domain of the viral RNA-dependent RNA polymerase (NS5B). Numerous crystal structures have been solved showing small molecule non-nucleoside inhibitors bound to the hepatitis C viral polymerase, but these structures alone do not define the mechanism of inhibition. Our prior kinetic analysis showed that nonnucleoside inhibitors binding to thumb site-2 (NNI2) do not block initiation or elongation of RNA synthesis; rather, they block the transition from the initiation to elongation, which is thought to proceed with significant structural rearrangement of the enzyme-RNA complex. Here we have mapped the effect of three NNI2 inhibitors on the conformational dynamics of the enzyme using hydrogen/deuterium exchange kinetics. All three inhibitors rigidify an extensive allosteric network extending >40 Å from the binding site, thus providing a structural rationale for the observed disruption of the transition from distributive initiation to processive elongation. The two more potent inhibitors also suppress slow cooperative unfolding in the fingers extension-thumb interface and primer grip, which may contribute their stronger inhibition. These results establish that NNI2 inhibitors act through long range allosteric effects, reveal important conformational changes underlying normal polymerase function, and point the way to the design of more effective allosteric inhibitors that exploit this new information.
机译:作为治疗丙型肝炎病毒感染的多种药物疗法的一部分,正在开发新的非核苷类似物。特别有希望的是与病毒RNA依赖性RNA聚合酶(NS5B)拇指结构域表面结合的抑制剂。已经解决了许多晶体结构,显示出与丙型肝炎病毒聚合酶结合的小分子非核苷抑制剂,但仅这些结构并不能确定抑制机制。我们先前的动力学分析表明,与拇指位点2(NNI2)结合的非核苷抑制剂不会阻止RNA合成的起始或延长。相反,它们阻止了从起始到延伸的过渡,这被认为是伴随着酶-RNA复合物的重大结构重排而进行的。在这里,我们已使用氢/氘交换动力学绘制了三种NNI2抑制剂对酶构象动力学的影响图。所有这三种抑制剂都强化了一个广泛的变构网络,该网络从结合位点开始延伸> 40Å,从而为观察到的从分布起始到连续延伸的过渡破坏提供了结构原理。两种更有效的抑制剂还抑制手指延伸-拇指界面和底漆握持中的缓慢协同展开,这可能有助于其更强的抑制作用。这些结果表明,NNI2抑制剂可通过远距离变构作用发挥作用,揭示正常聚合酶功能背后的重要构象变化,并为利用该新信息设计更有效的变构抑制剂指明了道路。

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