O'Neill Katelyn, Olson Bradley J S C, Huang Ning, Unis Dave, Clem Rollie J
Division of Biology, Kansas State University, Manhattan, KS 66506.
Division of Biology, Kansas State University, Manhattan, KS 66506
Proc Natl Acad Sci U S A. 2015 Mar 10;112(10):E1152-61. doi: 10.1073/pnas.1424469112. Epub 2015 Feb 23.
Millions of people are infected each year by arboviruses (arthropod-borne viruses) such as chikungunya, dengue, and West Nile viruses, yet for reasons that are largely unknown, only a relatively small number of mosquito species are able to transmit arboviruses. Understanding the complex factors that determine vector competence could facilitate strategies for controlling arbovirus infections. Apoptosis is a potential antiviral defense response that has been shown to be important in other virus-host systems. However, apoptosis is rarely seen in arbovirus-infected mosquito cells, raising questions about its importance as an antiviral defense in mosquitoes. We tested the effect of stimulating apoptosis during arbovirus infection by infecting Aedes aegypti mosquitoes with a Sindbis virus (SINV) clone called MRE/Rpr, in which the MRE-16 strain of SINV was engineered to express the proapoptotic gene reaper from Drosophila. MRE/Rpr exhibited an impaired infection phenotype that included delayed midgut infection, delayed virus replication, and reduced virus accumulation in saliva. Nucleotide sequencing of the reaper insert in virus populations isolated from individual mosquitoes revealed evidence of rapid and strong selection against maintenance of Reaper expression in MRE/Rpr-infected mosquitoes. The impaired phenotype of MRE/Rpr, coupled with the observed negative selection against Reaper expression, indicates that apoptosis is a powerful defense against arbovirus infection in mosquitoes and suggests that arboviruses have evolved mechanisms to avoid stimulating apoptosis in mosquitoes that serve as vectors.
每年有数百万人感染诸如基孔肯雅病毒、登革热病毒和西尼罗河病毒等虫媒病毒(节肢动物传播的病毒),然而,由于很大程度上未知的原因,只有相对少数的蚊子种类能够传播虫媒病毒。了解决定媒介能力的复杂因素有助于制定控制虫媒病毒感染的策略。细胞凋亡是一种潜在的抗病毒防御反应,已证明在其他病毒-宿主系统中很重要。然而,在感染虫媒病毒的蚊子细胞中很少见到细胞凋亡,这引发了关于其作为蚊子抗病毒防御的重要性的疑问。我们通过用一种名为MRE/Rpr的辛德毕斯病毒(SINV)克隆感染埃及伊蚊来测试在虫媒病毒感染期间刺激细胞凋亡的效果,在该克隆中,SINV的MRE-16株被设计用来表达果蝇的促凋亡基因收割者。MRE/Rpr表现出感染表型受损,包括中肠感染延迟、病毒复制延迟以及唾液中病毒积累减少。对从个体蚊子分离的病毒群体中收割者插入片段的核苷酸测序揭示了对MRE/Rpr感染的蚊子中维持收割者表达进行快速而强烈选择的证据。MRE/Rpr受损的表型,加上观察到的对收割者表达的负选择,表明细胞凋亡是蚊子抵抗虫媒病毒感染的有力防御,这表明虫媒病毒已经进化出机制来避免在作为媒介的蚊子中刺激细胞凋亡。