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Retroviral GAG proteins recruit AGO2 on viral RNAs without affecting RNA accumulation and translation

机译:逆转录病毒GAG蛋白在病毒RNA上募集AGO2,而不会影响RNA的积累和翻译

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Cellular micro(mi)RNAs are able to recognize viral RNAs through imperfect micro-homologies. Similar to the miRNA-mediated repression of cellular translation, this recognition is thought to tether the RNAi machinery, in particular Argonaute 2 (AGO2) on viral messengers and eventually to modulate virus replication. Here, we unveil another pathway by which AGO2 can interact with retroviral mRNAs. We show that AGO2 interacts with the retroviral Group Specific Antigen (GAG) core proteins and preferentially binds unspliced RNAs through the RNA packaging sequences without affecting RNA stability or eliciting translation repression. Using RNAi experiments, we provide evidences that these interactions, observed with both the human immunodeficiency virus 1 (HIV-1) and the primate foamy virus 1 (PFV-1), are required for retroviral replication. Taken together, our results place AGO2 at the core of the retroviral life cycle and reveal original AGO2 functions that are not related to miRNAs and translation repression.
机译:细胞微(mi)RNA能够通过不完善的微同源性识别病毒RNA。与miRNA介导的细胞翻译阻遏类似,这种识别被认为是将RNAi机制,特别是病毒信使上的Argonaute 2(AGO2)束缚在一起,并最终调节病毒复制。在这里,我们揭示了AGO2与逆转录病毒mRNA相互作用的另一种途径。我们显示,AGO2与逆转录病毒组特异性抗原(GAG)核心蛋白相互作用,并优先通过RNA包装序列结合未剪接的RNA,而不会影响RNA的稳定性或引起翻译抑制。使用RNAi实验,我们提供了证据,逆转录病毒复制需要与人类免疫缺陷病毒1(HIV-1)和灵长类泡沫病毒1(PFV-1)一起观察到这些相互作用。综上所述,我们的结果将AGO2置于逆转录病毒生命周期的核心,并揭示了与miRNA和翻译抑制无关的原始AGO2功能。

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