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在埃及伊蚊中肠早期登革病毒感染期间,病毒RNA载量与基因表达之间的个体共变异揭示了新的宿主因子。

Individual co-variation between viral RNA load and gene expression reveals novel host factors during early dengue virus infection of the Aedes aegypti midgut.

作者信息

Raquin Vincent, Merkling Sarah Hélène, Gausson Valérie, Moltini-Conclois Isabelle, Frangeul Lionel, Varet Hugo, Dillies Marie-Agnès, Saleh Maria-Carla, Lambrechts Louis

机构信息

Insect-Virus Interactions Group, Department of Genomes and Genetics, Institut Pasteur, Paris, France.

Centre National de la Recherche Scientifique, Unité de Recherche Associée 3012, Paris, France.

出版信息

PLoS Negl Trop Dis. 2017 Dec 19;11(12):e0006152. doi: 10.1371/journal.pntd.0006152. eCollection 2017 Dec.

Abstract

Dengue virus (DENV) causes more human infections than any other mosquito-borne virus. The current lack of antiviral strategies has prompted genome-wide screens for host genes that are required for DENV infectivity. Earlier transcriptomic studies that identified DENV host factors in the primary vector Aedes aegypti used inbred laboratory colonies and/or pools of mosquitoes that erase individual variation. Here, we performed transcriptome sequencing on individual midguts in a field-derived Ae. aegypti population to identify new candidate host factors modulating DENV replication. We analyzed the transcriptomic data using an approach that accounts for individual co-variation between viral RNA load and gene expression. This approach generates a prediction about the agonist or antagonist effect of candidate genes on DENV replication based on the sign of the correlation between gene expression and viral RNA load. Using this method, we identified 39 candidate genes that went undetected by conventional pairwise comparison of gene expression levels between DENV-infected midguts and uninfected controls. Only four candidate genes were detected by both methods, emphasizing their complementarity. We demonstrated the value of our approach by functional validation of a candidate agonist gene encoding a sterol regulatory element-binding protein (SREBP), which was identified by correlation analysis but not by pairwise comparison. We confirmed that SREBP promotes DENV infection in the midgut by RNAi-mediated gene knockdown in vivo. We suggest that our approach for transcriptomic analysis can empower genome-wide screens for potential agonist or antagonist factors by leveraging inter-individual variation in gene expression. More generally, this method is applicable to a wide range of phenotypic traits displaying inter-individual variation.

摘要

登革病毒(DENV)导致的人类感染比任何其他蚊媒病毒都多。目前缺乏抗病毒策略,这促使人们对DENV感染所需的宿主基因进行全基因组筛选。早期的转录组学研究在用于实验的近交系实验室群体和/或消除个体差异的蚊群中鉴定了主要病媒埃及伊蚊中的DENV宿主因子。在这里,我们对野外采集的埃及伊蚊群体中的单个中肠进行了转录组测序,以确定调节DENV复制的新的候选宿主因子。我们使用一种考虑病毒RNA载量和基因表达之间个体协变量的方法分析转录组数据。这种方法根据基因表达与病毒RNA载量之间相关性的正负,对候选基因对DENV复制的激动剂或拮抗剂作用进行预测。使用这种方法,我们鉴定出39个候选基因,这些基因在DENV感染的中肠和未感染的对照之间进行传统的基因表达水平成对比较时未被检测到。两种方法仅检测到四个候选基因,强调了它们的互补性。我们通过对一个编码固醇调节元件结合蛋白(SREBP)的候选激动剂基因进行功能验证,证明了我们方法的价值,该基因是通过相关性分析而非成对比较鉴定出来的。我们通过体内RNA干扰介导的基因敲低证实,SREBP促进中肠中的DENV感染。我们认为,我们的转录组分析方法可以通过利用基因表达中的个体间差异,助力对潜在激动剂或拮抗剂因子进行全基因组筛选。更普遍地说,这种方法适用于表现出个体间差异的广泛表型特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dea/5752042/4092b4a30404/pntd.0006152.g001.jpg

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