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Assessing the Potential Interactions between Cellular miRNA and Arboviral Genomic RNA in the Yellow Fever Mosquito Aedes aegypti

机译:评估黄热蚊埃及伊蚊中细胞miRNA和虫媒基因组RNA之间的潜在相互作用

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摘要

Although the role of exogenous small interfering RNA (siRNA) and P-element induced wimpy testis (PIWI)-interacting RNA (piRNA) pathways in mosquito antiviral immunity is increasingly better understood, there is still little knowledge regarding the role of mosquito cellular microRNA (miRNA). Identifying direct interactions between the mosquito miRNAs and the RNA genome of arboviruses and choosing the relevant miRNA candidates to explore resulting antiviral mechanisms are critical. Here, we carried out genomic analyses to identify Aedes aegypti miRNAs that potentially interact with various lineages and genotypes of chikungunya, dengue, and Zika viruses. By using prediction tools with distinct algorithms, several miRNA binding sites were commonly found within different genotypes/and or lineages of each arbovirus. We further analyzed those miRNAs that could target more than one arbovirus, required a low energy threshold to form miRNA-viralRNA (vRNA) complexes, and predicted potential RNA structures using RNAhybrid software. We predicted miRNA candidates that might participate in regulating arboviral replication in Ae. aegypti. Even without any experimental validation, which should be done as a next step, this study can shed further light on the role of miRNA in mosquito innate immunity and targets for future studies.
机译:尽管外源性小干扰RNA(siRNA)和P元素诱导的imp弱睾丸(PIWI)相互作用RNA(piRNA)途径在蚊子抗病毒免疫中的作用越来越为人们所了解,但是关于蚊子细胞微RNA的作用仍然知之甚少( miRNA)。鉴定蚊子miRNA与虫媒病毒RNA基因组之间的直接相互作用并选择相关的miRNA候选物以探索产生的抗病毒机制至关重要。在这里,我们进行了基因组分析,以鉴定可能与基孔肯雅热,登革热和寨卡病毒的各种谱系和基因型相互作用的埃及伊蚊miRNA。通过使用具有不同算法的预测工具,通常在每种虫媒病毒的不同基因型和/或谱系中发现了多个miRNA结合位点。我们进一步分析了可能靶向多个虫媒病毒,需要低能量阈值以形成miRNA-viralRNA(vRNA)复合物的miRNA,并使用RNAhybrid软件预测了潜在的RNA结构。我们预测了可能参与调控Ae中虫媒病毒复制的miRNA候选物。埃及。即使没有进行任何实验验证(下一步应进行验证),该研究也可以进一步阐明miRNA在蚊子固有免疫中的作用以及未来研究的目标。

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