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首页> 外文期刊>BMB Reports >Single-molecule fluorescence measurements reveal the reaction mechanisms of the core-RISC, composed of human Argonaute 2 and a guide RNA
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Single-molecule fluorescence measurements reveal the reaction mechanisms of the core-RISC, composed of human Argonaute 2 and a guide RNA

机译:单分子荧光测量揭示了核心RISC的反应机制,由人体Argonaute 2和引导RNA组成

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In eukaryotes, small RNAs play important roles in both gene regulation and resistance to viral infection. Argonaute proteins have been identified as a key component of the effector complexes of various RNA-silencing pathways, but the mechanistic roles of Argonaute proteins in these pathways are not clearly understood. To address this question, we performed single- molecule fluorescence experiments using an RNA-induced silencing complex (core-RISC) composed of a small RNA and human Argonaute 2. We found that target binding of core- RISC starts at the seed region of the guide RNA. After target binding, four distinct reactions followed: target cleavage, transient binding, stable binding, and Argonaute unloading. Target cleavage required extensive sequence complementarity and accelerated core-RISC dissociation for recycling. In contrast, the stable binding of core-RISC to target RNAs required seed-match only, suggesting a potential explanation for the seed-match rule of microRNA (miRNA) target selection.
机译:在真核生物中,小RNA在基因调节和抗病毒感染中起重要作用。已经鉴定了野生蛋白作为各种RNA沉默途径的效应复合物的关键组分,但是不清楚地清楚地理解这些途径中的Argonaute蛋白的机械作用。为了解决这个问题,我们使用由小RNA和人嗜型核心组成的RNA诱导的沉默复合物(Core-RISC)进行单分子荧光实验2.我们发现核心RISC的目标结合在种子区域开始导向RNA。靶结合后,遵循四种不同的反应:靶裂解,瞬时结合,稳定的结合和Argonaute卸载。靶裂解需要广泛的序列互补性和加速核心RISC解离进行再循环。相反,仅核心RIS稳定地结合靶RNA,仅需要种子匹配,表明MicroRNA(miRNA)目标选择的种子匹配规则的潜在解释。

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