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与肠道病毒D68 3C蛋白酶结合的抑制剂的结构分析

Structural Analysis of Inhibitor Binding to Enterovirus-D68 3C Protease.

作者信息

Azzolino Vincent N, Shaqra Ala M, Ali Akbar, Kurt Yilmaz Nese, Schiffer Celia A

机构信息

Department of Biochemistry and Molecular Biotechnology, University of Massachusetts Chan Medical School, Worcester, MA 01605, USA.

出版信息

Viruses. 2025 Jan 8;17(1):75. doi: 10.3390/v17010075.

Abstract

Enterovirus-D68 (EV68) continues to present as a global health issue causing respiratory illness and outbreaks associated with long-lasting neurological disease, with no antivirals or specific treatment options. The development of antiviral therapeutics, such as small-molecule inhibitors that target conserved proteins like the enteroviral 3C protease, remains to be achieved. While various 3C inhibitors have been investigated, their design does not consider the potential emergence of drug resistance mutations. For other antivirals where resistance has been a challenge, we have demonstrated that the likelihood of resistance can be minimized by designing inhibitors that leverage the evolutionary constraints of the target. Here, we characterize a series of 3C inhibitors against EV68-3C protease through enzyme inhibition, protein crystallography, and structural analysis. We have determined and analyzed three high-resolution inhibitor-bound crystal structures of EV68-3C protease, which revealed possible sites of resistance mutations, a key structural water molecule conserved during ligand binding, and the conformational flexibility of the catalytic histidine H40. This structural analysis combined with enzymatic assays provides insights for the rational design of inhibitors that are robust against resistance toward developing antiviral treatments for EV68 infections.

摘要

肠道病毒D68(EV68)仍然是一个全球性的健康问题,它会引发呼吸道疾病以及与持久性神经疾病相关的疫情,目前尚无抗病毒药物或特效治疗方案。抗病毒疗法的开发,如针对肠道病毒3C蛋白酶等保守蛋白的小分子抑制剂,仍有待实现。虽然已经对各种3C抑制剂进行了研究,但它们的设计并未考虑耐药性突变的潜在出现。对于其他存在耐药性挑战的抗病毒药物,我们已经证明,通过设计利用靶点进化限制的抑制剂,可以将耐药的可能性降至最低。在此,我们通过酶抑制、蛋白质晶体学和结构分析,对一系列针对EV68 - 3C蛋白酶的3C抑制剂进行了表征。我们测定并分析了EV68 - 3C蛋白酶的三个高分辨率抑制剂结合晶体结构,这些结构揭示了可能的耐药性突变位点、配体结合过程中保守的关键结构水分子以及催化组氨酸H40的构象灵活性。这种结构分析与酶活性测定相结合,为合理设计对耐药具有抗性的抑制剂提供了思路,有助于开发针对EV68感染的抗病毒治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f2c/11768739/2f610c73f3af/viruses-17-00075-g001.jpg

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