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泛血清型登革病毒抑制剂 JNJ-A07 靶向 NS4A-2K-NS4B 与 NS2B/NS3 的相互作用并阻断复制细胞器的形成。

Pan-serotype dengue virus inhibitor JNJ-A07 targets NS4A-2K-NS4B interaction with NS2B/NS3 and blocks replication organelle formation.

机构信息

Heidelberg University, Medical Faculty Heidelberg, Department of Infectious Diseases, Molecular Virology, Center for Integrative Infectious Disease Research, Heidelberg, Germany.

Janssen Infectious Diseases Discovery, Janssen-Cilag, Val de Reuil, France.

出版信息

Nat Commun. 2024 Jul 19;15(1):6080. doi: 10.1038/s41467-024-50437-3.

Abstract

Dengue fever represents a significant medical and socio-economic burden in (sub)tropical regions, yet antivirals for treatment or prophylaxis are lacking. JNJ-A07 was described as highly active against the different genotypes within each serotype of the disease-causing dengue virus (DENV). Based on clustering of resistance mutations it has been assumed to target DENV non-structural protein 4B (NS4B). Using a photoaffinity labeling compound with high structural similarity to JNJ-A07, here we demonstrate binding to NS4B and its precursor NS4A-2K-NS4B. Consistently, we report recruitment of the compound to intracellular sites enriched for these proteins. We further specify the mechanism-of-action of JNJ-A07, which has virtually no effect on viral polyprotein cleavage, but targets the interaction between the NS2B/NS3 protease/helicase complex and the NS4A-2K-NS4B cleavage intermediate. This interaction is functionally linked to de novo formation of vesicle packets (VPs), the sites of DENV RNA replication. JNJ-A07 blocks VPs biogenesis with little effect on established ones. A similar mechanism-of-action was found for another NS4B inhibitor, NITD-688. In summary, we unravel the antiviral mechanism of these NS4B-targeting molecules and show how DENV employs a short-lived cleavage intermediate to carry out an early step of the viral life cycle.

摘要

登革热在(亚热带)热带地区是一个重大的医学和社会经济负担,但缺乏治疗或预防的抗病毒药物。JNJ-A07 被描述为对引起疾病的登革热病毒(DENV)每个血清型的不同基因型具有高度活性。基于耐药性突变的聚类,它被假定为针对 DENV 非结构蛋白 4B(NS4B)。在这里,我们使用一种与 JNJ-A07 具有高度结构相似性的光亲和标记化合物,证明其与 NS4B 及其前体 NS4A-2K-NS4B 结合。一致地,我们报告了该化合物募集到富含这些蛋白质的细胞内位置。我们进一步阐明了 JNJ-A07 的作用机制,它实际上对病毒多蛋白切割没有影响,但针对 NS2B/NS3 蛋白酶/解旋酶复合物与 NS4A-2K-NS4B 切割中间产物的相互作用。这种相互作用与新形成的囊泡包(VP)的功能相关,VP 是 DENV RNA 复制的部位。JNJ-A07 抑制 VP 的生物发生,对已建立的 VP 影响很小。另一种 NS4B 抑制剂 NITD-688 也发现了类似的作用机制。总之,我们揭示了这些靶向 NS4B 的分子的抗病毒机制,并展示了 DENV 如何利用短暂的切割中间产物来执行病毒生命周期的早期步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1be/11271582/60074cf470f8/41467_2024_50437_Fig1_HTML.jpg

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