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基于理性设计的丙型肝炎病毒(HCV) p7 通道活性抑制剂揭示了双模式抗病毒治疗的前景。

Rationally derived inhibitors of hepatitis C virus (HCV) p7 channel activity reveal prospect for bimodal antiviral therapy.

机构信息

Leeds Institute of Medical Research, School of Medicine, Faculty of Medicine and Health, University of Leeds, St James' University Hospital, Leeds, United Kingdom.

Astbury Centre for Structural Molecular Biology, University of Leeds, Woodhouse Lane, Leeds, United Kingdom.

出版信息

Elife. 2020 Nov 10;9:e52555. doi: 10.7554/eLife.52555.

Abstract

Since the 1960s, a single class of agent has been licensed targeting virus-encoded ion channels, or 'viroporins', contrasting the success of channel blocking drugs in other areas of medicine. Although resistance arose to these prototypic adamantane inhibitors of the influenza A virus (IAV) M2 proton channel, a growing number of clinically and economically important viruses are now recognised to encode essential viroporins providing potential targets for modern drug discovery. We describe the first rationally designed viroporin inhibitor with a comprehensive structure-activity relationship (SAR). This step-change in understanding not only revealed a second biological function for the p7 viroporin from hepatitis C virus (HCV) during virus entry, but also enabled the synthesis of a labelled tool compound that retained biological activity. Hence, p7 inhibitors (p7i) represent a unique class of HCV antiviral targeting both the spread and establishment of infection, as well as a precedent for future viroporin-targeted drug discovery.

摘要

自 20 世纪 60 年代以来,靶向病毒编码的离子通道(又称“病毒孔道蛋白”)的药物已被批准上市,而这与其他医学领域中通道阻断药物的成功形成了鲜明对比。尽管最初针对甲型流感病毒(IAV)M2 质子通道的金刚烷抑制剂已出现耐药性,但现在越来越多的临床和经济上重要的病毒被认为编码必需的病毒孔道蛋白,为现代药物发现提供了潜在的靶标。我们描述了首个具有全面结构活性关系(SAR)的合理设计的病毒孔道蛋白抑制剂。这种理解上的重大突破不仅揭示了丙型肝炎病毒(HCV)p7 病毒孔道蛋白在病毒进入过程中的第二个生物学功能,还使得能够合成保留生物活性的标记工具化合物。因此,p7 抑制剂(p7i)不仅代表了一类独特的抗 HCV 药物,可同时针对病毒传播和感染建立进行靶向治疗,也为未来的病毒孔道蛋白靶向药物发现开创了先河。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cb4/7714397/42f338d7fe75/elife-52555-fig1.jpg

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