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Capturing microRNA targets using an RNA-induced silencing complex (RISC)-trap approach

机译:使用RNA诱导的沉默复合物(RISC)捕获方法捕获microRNA目标

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Identifying targets is critical for understanding the biological effects of microRNA (miRNA) expression. The challenge lies in characterizing the cohort of targets for a specific miRNA, especially when targets are being actively down-regulated in miRNA- RNA-induced silencing complex (RISC)-messengerRNA (mRNA) complexes. We have developed a robust and versatile strategy called RISCtrap to stabilize and purify targets from this transient interaction. Its utility was demonstrated by determining specific high-confidence target datasets for miR-124, miR-132, and miR-181 that contained known and previously unknown transcripts. Two previously unknown miR-132 targets identified with RISCtrap, adaptor protein CT10 regulator of kinase 1 (CRK1) and tight junction-associated protein 1 (TJAP1), were shown to be endogenously regulated by miR-132 in adult mouse forebrain. The datasets, moreover, differed in the number of targets and in the types and frequency of microRNA recognition element (WIRE) motifs, thus revealing a previously underappreciated level of specificity in the target sets regulated by individual miRNAs.
机译:识别靶标对于理解microRNA(miRNA)表达的生物学效应至关重要。挑战在于表征特定miRNA靶标的队列,特别是当靶标在miRNA-RNA诱导的沉默复合物(RISC)-messengerRNA(mRNA)复合物中被主动下调时。我们已经开发了一种称为RISCtrap的强大且通用的策略,可以从这种瞬时相互作用中稳定和纯化目标。通过确定包含已知和先前未知转录本的miR-124,miR-132和miR-181的特定高可信度目标数据集,证明了其实用性。在成年小鼠前脑中,由RISCtrap鉴定的两个先前未知的miR-132靶标,激酶1的衔接蛋白CT10调节剂(CRK1)和紧密连接相关蛋白1(TJAP1)被miR-132内源性调控。此外,数据集的靶标数量以及微RNA识别元件(WIRE)图案的类型和频率都不同,因此揭示了以前受单个miRNA调控的靶标集的特异性水平未得到充分认识。

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