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Binding of Low Molecular Weight Inhibitors Promotes Large Conformational Changes in the Dengue Virus NS2B-NS3 Protease: Fold Analysis by Pseudocontact Shifts

机译:低分子量抑制剂的结合促进登革热病毒NS2B-NS3蛋白酶的大构象变化:伪接触位移的折叠分析。

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摘要

The two-component dengue virus NS2B-NS3 protease (DEN NS2B-NS3pro) is an established drug target, but inhibitor design is hampered by the lack of a crystal structure of the protease in its fully active form. In solution and without inhibitors, the functionally important C-terminal segment of the NS2B cofactor is dissociated from DEN NS3pro ("open state"), necessitating a large structural change to produce the "closed state" thought to underpin activity. We analyzed the fold of DEN NS2B-NS3pro in solution with and without bound inhibitor by nuclear magnetic resonance (NMR) spectroscopy. Multiple paramagnetic lanthanide tags were attached to different sites to generate pseudocontact shifts (PCS). In the face of severe spectral overlap and broadening of many signals by conformational exchange, methods for assignment of ~(15)N-HSQC cross-peaks included selective mutation, combinatorial isotope labeling, and comparison of experimental PCSs and PCSs back-calculated for a structural model of the closed conformation built by using the structure of the related West Nile virus (WNV) protease as a template. The PCSs show that, in the presence of a positively charged low-molecular weight inhibitor, the enzyme assumes a closed state that is very similar to the closed state previously observed for the WNV protease. Therefore, a model of the protease built on the closed conformation of the WNV protease is a better template for rational drug design than available crystal structures, at least for positively charged inhibitors. To assess the open state, we created a binding site for a Gd~(3+) complex and measured paramagnetic relaxation enhancements. The results show that the specific open conformation displayed in the crystal of DEN NS2B-NS3pro is barely populated in solution. The techniques used open an avenue to the fold analysis of proteins that yield poor NMR spectra, as PCSs from multiple sites in combination with model building generate powerful information even from incompletely assigned ~(15)N-HSQC spectra.
机译:二组分登革热病毒NS2B-NS3蛋白酶(DEN NS2B-NS3pro)是既定的药物靶标,但由于缺乏蛋白酶的完全活性形式的晶体结构,阻碍了抑制剂的设计。在没有抑制剂的溶液中,NS2B辅因子的功能重要的C末端片段与DEN NS3pro分离(“开放状态”),需要进行大的结构变化以产生被认为是支撑活性的“封闭状态”。我们通过核磁共振(NMR)光谱分析了有和没有结合抑制剂的溶液中DEN NS2B-NS3pro的折叠率。多个顺磁性镧系元素标签附着到不同的位置以生成伪接触位移(PCS)。面对严重的光谱重叠和通过构象交换使许多信号变宽的情况,〜(15)N-HSQC交叉峰的分配方法包括选择性突变,组合同位素标记以及对实验PCS和PCS进行反向计算得到的结果。以相关的西尼罗河病毒(WNV)蛋白酶的结构为模板构建的闭合构象的结构模型。 PCS显示,在带正电荷的低分子量抑制剂的存在下,该酶呈现与以前观察到的WNV蛋白酶的闭合状态非常相似的闭合状态。因此,建立在WNV蛋白酶封闭构象上的蛋白酶模型比起可用的晶体结构,至少对于带正电荷的抑制剂而言,是用于合理药物设计的更好的模板。为了评估开放状态,我们创建了Gd〜(3+)配合物的结合位点并测量了顺磁弛豫增强。结果表明,DEN NS2B-NS3pro晶体中显示的特定开放构象几乎不存在于溶液中。所使用的技术为产生不良NMR光谱的蛋白质的折叠分析开辟了道路,因为来自多个位点的PCS与模型构建相结合甚至可以从不完全分配的〜(15)N-HSQC光谱中生成强大的信息。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第47期|p.19205-19215|共11页
  • 作者单位

    Research School of Chemistry, Australian National University, Canberra, ACT 0200, Australia;

    Research School of Chemistry, Australian National University, Canberra, ACT 0200, Australia,MRC Laboratory of Molecular Biology, Hills Road, Cambridge, CB2, OQH, U.K.;

    Research School of Chemistry, Australian National University, Canberra, ACT 0200, Australia;

    Medicinal Chemistry and Drug Action, Monash Institute of Pharmaceutical Sciences, Parkville VIC 3052, Australia;

    Medicinal Chemistry and Drug Action, Monash Institute of Pharmaceutical Sciences, Parkville VIC 3052, Australia;

    Research School of Chemistry, Australian National University, Canberra, ACT 0200, Australia;

    Research School of Chemistry, Australian National University, Canberra, ACT 0200, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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