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不同亨尼帕病毒聚合酶复合蛋白的随意活动使得在杂交系统中能高效进行微型基因组复制。

Indiscriminate activities of different henipavirus polymerase complex proteins allow for efficient minigenome replication in hybrid systems.

作者信息

Li Xiao, Yang Yanling, López Carolina B

机构信息

Department of Molecular Microbiology and Center for Women's Infectious Diseases Research, Washington University in St Louis, St. Louis, Missouri, USA.

出版信息

J Virol. 2024 Jun 13;98(6):e0050324. doi: 10.1128/jvi.00503-24. Epub 2024 May 23.

Abstract

The henipaviruses, including Nipah virus (NiV) and Hendra virus (HeV), are biosafety level 4 (BSL-4) zoonotic pathogens that cause severe neurological and respiratory disease in humans. To study the replication machinery of these viruses, we developed robust minigenome systems that can be safely used in BSL-2 conditions. The nucleocapsid (N), phosphoprotein (P), and large protein (L) of henipaviruses are critical elements of their replication machinery and thus essential support components of the minigenome systems. Here, we tested the effects of diverse combinations of the replication support proteins on the replication capacity of the NiV and HeV minigenomes by exchanging the helper plasmids coding for these proteins among the two viruses. We demonstrate that all combinations including one or more heterologous proteins were capable of replicating both the NiV and HeV minigenomes. Sequence alignment showed identities of 92% for the N protein, 67% for P, and 87% for L. Notably, variations in amino acid residues were not concentrated in the N-P and P-L interacting regions implying that dissimilarities in amino acid composition among NiV and HeV polymerase complex proteins may not impact their interactions. The observed indiscriminate activity of NiV and HeV polymerase complex proteins is different from related viruses, which can support the replication of heterologous genomes only when the whole polymerase complex belongs to the same virus. This newly observed promiscuous property of the henipavirus polymerase complex proteins likely attributed to their conserved interaction regions could potentially be harnessed to develop universal anti-henipavirus antivirals.IMPORTANCEGiven the severity of disease induced by Hendra and Nipah viruses in humans and the continuous emergence of new henipaviruses as well as henipa-like viruses, it is necessary to conduct a more comprehensive investigation of the biology of henipaviruses and their interaction with the host. The replication of henipaviruses and the development of antiviral agents can be studied in systems that allow experiments to be performed under biosafety level 2 conditions. Here, we developed robust minigenome systems for the Nipah virus (NiV) and Hendra virus (HeV) that provide a convenient alternative for studying NiV and HeV replication. Using these systems, we demonstrate that any combination of the three polymerase complex proteins of NiV and HeV could effectively initiate the replication of both viral minigenomes, which suggests that the interaction regions of the polymerase complex proteins could be effective targets for universal and effective anti-henipavirus interventions.

摘要

亨尼帕病毒,包括尼帕病毒(NiV)和亨德拉病毒(HeV),是生物安全4级(BSL-4)人畜共患病原体,可导致人类严重的神经和呼吸系统疾病。为了研究这些病毒的复制机制,我们开发了强大的微型基因组系统,可在BSL-2条件下安全使用。亨尼帕病毒的核衣壳(N)、磷蛋白(P)和大蛋白(L)是其复制机制的关键要素,因此也是微型基因组系统必不可少的支持组件。在这里,我们通过在两种病毒之间交换编码这些蛋白质的辅助质粒,测试了复制支持蛋白的不同组合对NiV和HeV微型基因组复制能力的影响。我们证明,所有包含一种或多种异源蛋白的组合都能够复制NiV和HeV微型基因组。序列比对显示,N蛋白的同一性为92%,P蛋白为67%,L蛋白为87%。值得注意的是,氨基酸残基的变异并不集中在N-P和P-L相互作用区域,这意味着NiV和HeV聚合酶复合蛋白之间氨基酸组成的差异可能不会影响它们的相互作用。观察到的NiV和HeV聚合酶复合蛋白的无差别活性与相关病毒不同,相关病毒只有在整个聚合酶复合体属于同一病毒时才能支持异源基因组的复制。亨尼帕病毒聚合酶复合蛋白这种新观察到的混杂特性可能归因于它们保守的相互作用区域,有可能被用于开发通用的抗亨尼帕病毒抗病毒药物。

重要性

鉴于亨德拉病毒和尼帕病毒在人类中引起的疾病的严重性,以及新的亨尼帕病毒和类亨尼帕病毒的不断出现,有必要对亨尼帕病毒的生物学特性及其与宿主的相互作用进行更全面的研究。亨尼帕病毒的复制和抗病毒药物的开发可以在允许在生物安全2级条件下进行实验的系统中进行研究。在这里,我们为尼帕病毒(NiV)和亨德拉病毒(HeV)开发了强大的微型基因组系统,为研究NiV和HeV复制提供了一种方便的替代方法。使用这些系统,我们证明,NiV和HeV的三种聚合酶复合蛋白的任何组合都可以有效地启动两种病毒微型基因组的复制,这表明聚合酶复合蛋白的相互作用区域可能是通用和有效的抗亨尼帕病毒干预的有效靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82c9/11237569/25b721d29c55/jvi.00503-24.f001.jpg

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