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Entry is a rate-limiting step for viral infection in a Drosophila melanogaster model of pathogenesis

机译:进入是果蝇果蝇发病机理模型中病毒感染的限速步骤。

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The identification of host factors that control susceptibility to infection has been hampered by a lack of amenable genetic systems. We established an in vivo model to determine the host factors that control pathogenesis and identified viral entry as a rate-limiting step for infection. We infected Drosophila melanogaster cells and adults with drosophila C virus and found that the clathrin-mediated endocytotic pathway is essential for both infection and pathogenesis. Heterozygosity for mutations in genes involved in endocytosis is sufficient to protect flies from pathogenicity, indicating the exquisite sensitivity and dependency of the virus on this pathway. Thus, this virus model provides a sensitive and efficient approach for identifying components required for pathogenesis.
机译:缺乏合适的遗传系统阻碍了控制感染易感性的宿主因素的确定。我们建立了一个体内模型,以确定控制发病机理的宿主因素,并将病毒进入确定为感染的限速步骤。我们用果蝇C病毒感染了果蝇的果蝇和成年果蝇,发现网格蛋白介导的内吞途径对于感染和发病机理均至关重要。内吞作用相关基因突变的杂合性足以保护果蝇免于致病性,这表明病毒对这种途径的敏感性和依赖性很高。因此,该病毒模型提供了一种灵敏有效的方法来鉴定发病机理所需的成分。

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