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Cysteine Disulfide Traps Reveal Distinct Conformational Ensembles in Dengue Virus NS2B-NS3 Protease

机译:半胱氨酸二硫化物陷阱在登革热病毒NS2B-NS3蛋白酶中揭示了不同的构象整体

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摘要

The dengue virus protease (NS2B-NS3pro) plays a critical role in the dengue viral life cycle, making it an attractive drug target for dengue-related pathologies, including 4: dengue hemorrhagic fever. A number of studies indicate that NS2B-NS3pro undergoes a transition between two widely different conformational states: an "open" (inactive) conformation and a "closed" (active) conformation. For the past several years, the equilibrium between these states and the resting conformation of NS2B-NS3pro have been debated, although a strong consensus is emerging. To investigate the importance of such conformational states, we developed versions of NS2B-NS3pro that allow us to trap the enzyme in various distinct conformations. Our data from these variants suggest that the enzymatic activity appears to be dependent on the movement of NS2B and may rely on the flexibility of the protease core. Locking the enzyme into the "closed" conformation dramatically increased activity, strongly suggesting that the "closed" conformation is the active conformation. The observed resting state of the enzyme depends largely on the construct used to express the NS2B-NS3pro complex. In an "unlinked" construct, in which the NS2B and NS3 regions exist as independent, co-expressed polypeptides, the enzyme rests predominantly in a "closed", active conformation. In contrast, in a "linked" construct, in which NS2B and NS3 are attached by a nine-amino acid linker, NS2B-NS3pro adopts a more relaxed, alternative conformation. Nevertheless, even the unlinked construct samples both the "closed" and other alternative conformations. Given our findings, and the more realistic resemblance of NS2B-NS3pro to the native enzyme, these data strongly suggest that studies should focus on the "unlinked" constructs moving forward. Additionally, the results from these studies provide a more detailed understanding of the various poses of the dengue virus NS2B-NS3 protease and should help guide future drug discovery effo
机译:登革热病毒蛋白酶(NS2B-NS3PRO)在登革热病毒生命周期中起着关键作用,使其成为登革热相关病理的有吸引力的药物目标,包括4:登革热出血热。许多研究表明,NS2B-NS3PRO经历了两个广泛不同的构象状态之间的过渡:“打开”(非活动)构象和“闭合”(活性)构象。在过去几年中,这些国家与NS2B-NS3PRO的休息构象之间的均衡已经讨论,尽管出现了强有力的共识。为了调查这种构象状态的重要性,我们开发了NS2B-NS3PRO的版本,使我们能够在各种不同构象中捕获酶。我们来自这些变体的数据表明酶活性似乎依赖于NS2B的运动,并且可以依赖于蛋白酶芯的柔韧性。将酶锁定到“闭合”构象中显着增加了活性,强烈建议“闭合”构象是主动构象。观察到的酶的静止状态主要取决于用于表达NS2B-NS3PRO复合物的构建体。在“未链接”构建体中,其中NS2B和NS3区域作为独立的,共表达的多肽存在,酶主要静置在“闭合”,主动构象中。相反,在“链接”构建体中,其中NS2B和NS3由九个氨基酸接头附着,NS2B-NS3PRO采用更弛豫的替代构象。尽管如此,即使是未链接的构建体样本也可以样本“封闭”和其他替代构象。鉴于我们的发现,以及NS2B-NS3PRO对本土酶的更现实的相似性,这些数据强烈表明,研究应该关注前进的“未链接”构建体。此外,这些研究的结果提供了更详细的了解登革病毒NS2B-NS3蛋白酶的各种姿势,并应帮助指导未来的药物发现效率

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  • 来源
    《Biochemistry》 |2019年第6期|共12页
  • 作者单位

    Univ Massachusetts Dept Chem 374 LGRT 710 North Pleasant St Amherst MA 01003 USA;

    Univ Massachusetts Dept Chem 374 LGRT 710 North Pleasant St Amherst MA 01003 USA;

    Univ Massachusetts Dept Chem 374 LGRT 710 North Pleasant St Amherst MA 01003 USA;

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  • 正文语种 eng
  • 中图分类 生物化学;
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