涂层蛋白复合体I是登革病毒非结构蛋白1有效分泌所必需的。

IF 3.8 2区 医学 Q2 VIROLOGY
Journal of Virology Pub Date : 2025-09-23 Epub Date: 2025-08-21 DOI:10.1128/jvi.00962-25
Stephen M Johnson, Siena M Centofanti, Gustavo Bracho, Michael R Beard, Jillian M Carr, Nicholas S Eyre
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引用次数: 0

摘要

分泌性非结构蛋白1 (sNS1)是一种重要的正黄病毒致病因子,可诱导血管渗漏,是重症登革热的关键症状。鉴于nss1在登革热发病机制中的作用,明确NS1分泌的分子机制可能有助于开发针对NS1的抗病毒治疗方法。为此,我们进行了定制的膜转运siRNA筛选,以确定参与NS1分泌的人宿主因子。我们的屏幕显示COPA、COPB2和COPG1是排名靠前的。这些蛋白是包衣蛋白复合物I (COPI) 7个亚基中的3个,COPI包衣转运囊泡在早期分泌途径中起作用,暗示COPI机制参与NS1分泌。在登革热病毒(DENV)感染的细胞中采用宿主基因敲除的验证研究证实,COPI成分是NS1有效分泌所必需的,但对于感染性病毒的输出是必不可少的。在感染西尼罗病毒昆金亚型(WNV/KUNV)的细胞中,当COPI成分被耗尽时,NS1的分泌也出现了类似的减少,这表明实现NS1分泌的分子机制可能是正黄病毒属的一个保守特征。在DENV NS1- ns5多蛋白表达细胞中异源表达野生型和致病性COPI变异体导致NS1分泌谱改变,提示等位基因变异体和COPI组分表达水平改变可能间接影响登革热疾病的严重程度。鉴定COPI成分作为NS1分泌效率的重要决定因素可能有助于鉴定抗正黄病毒治疗的新靶点。世界上一半以上的人口面临感染蚊媒致病性正黄病毒(如登革热病毒)的风险。尽管病毒NS1蛋白的分泌形式已被确定为DENV和相关正黄病毒致病作用的主要决定因素,但涉及NS1分泌的确切机制尚不清楚。在这里,我们使用定制的膜运输siRNA筛选来询问参与感染细胞分泌NS1的宿主因子。这揭示了在早期分泌途径中调节囊泡运输的COPI复合物的三个组成部分是NS1分泌的重要因素。通过野生型DENV和WNV/KUNV感染、过表达方法和化学抑制研究,进一步验证了COPI成分参与NS1分泌。总之,本研究证明了COPI机制在NS1分泌中的重要性,并表明在NS1分泌中利用这一机制可能是未来抗病毒药物开发的目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coatomer protein complex I is required for efficient secretion of dengue virus non-structural protein 1.

Secreted non-structural protein 1 (sNS1) is an important orthoflavivirus pathogenic factor that can induce vascular leakage, a key symptom of severe dengue disease. Given the role of sNS1 in dengue pathogenesis, defining the molecular mechanisms of NS1 secretion may contribute to the development of NS1-targeting antiviral therapies. To this end, we performed a customized membrane-trafficking siRNA screen to identify human host factors involved in NS1 secretion. Our screen identified COPA, COPB2, and COPG1 as the top-ranking hits. These proteins are three of the seven subunits of the coatomer protein complex I (COPI) that coat transport vesicles that operate within the early secretory pathway, implicating COPI machinery as being involved in NS1 secretion. Validation studies employing host gene knockdown in dengue virus (DENV)-infected cells confirmed that COPI components are required for efficient NS1 secretion but are dispensable for infectious virus egress. Similar reductions in NS1 secretion were observed when COPI components were depleted in cells infected with West Nile virus Kunjin subtype (WNV/KUNV), indicating that the molecular mechanisms exploited to achieve NS1 secretion may be a conserved feature within the Orthoflavivirus genus. Heterologous expression of wild-type and pathogenic COPI variants in DENV NS1-NS5 polyprotein-expressing cells resulted in altered NS1 secretion profiles, suggesting that allelic variants and altered expression levels of COPI components may indirectly influence the severity of dengue disease. The identification of COPI components as important determinants of NS1 secretion efficiency may aid in the identification of novel targets for anti-orthoflaviviral therapies.IMPORTANCEOver half of the world's population is at risk of infection with mosquito-borne pathogenic orthoflaviviruses such as DENV. Although the secreted form of the viral NS1 protein has been identified as a major determinant of the pathogenic effects of DENV and related orthoflaviviruses, the exact mechanisms involved in NS1 secretion are poorly understood. Here, we interrogated host factors involved in the secretion of NS1 from infected cells using a customized membrane-trafficking siRNA screen. This revealed three components of the COPI complex that regulate vesicular transport in the early secretory pathway as important factors in NS1 secretion. The involvement of COPI components in NS1 secretion was further validated using wild-type DENV and WNV/KUNV infection, overexpression approaches, and chemical inhibition studies. Together, this study demonstrates the importance of COPI machinery in NS1 secretion and suggests that exploitation of this machinery in NS1 secretion may represent a future target of antiviral drug development.

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来源期刊
Journal of Virology
Journal of Virology 医学-病毒学
CiteScore
10.10
自引率
7.40%
发文量
906
审稿时长
1 months
期刊介绍: Journal of Virology (JVI) explores the nature of the viruses of animals, archaea, bacteria, fungi, plants, and protozoa. We welcome papers on virion structure and assembly, viral genome replication and regulation of gene expression, genetic diversity and evolution, virus-cell interactions, cellular responses to infection, transformation and oncogenesis, gene delivery, viral pathogenesis and immunity, and vaccines and antiviral agents.
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