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The Arabidopsis thaliana double-stranded RNA binding protein DRB1 directs guide strand selection from microRNA duplexes

机译:拟南芥双链RNA结合蛋白DRB1指导从microRNA双链体中选择引导链

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摘要

In Arabidopsis thaliana (Arabidopsis), DICER-LIKE1 (DCL1) functions together with the double-stranded RNA binding protein (dsRBP), DRB1, to process microRNAs (miRNAs) from their precursor transcripts prior to their transfer to the RNA-induced silencing complex (RISC). miRNA-loaded RISC directs RNA silencing of cognate mRNAs via ARGONAUTE1 (AGO1)-catalyzed cleavage. Short interefering RNAs (siRNAs) are processed from viral-derived or transgene-encoded molecules of double-stranded RNA (dsRNA) by the DCL/dsRBP partnership, DCL4/DRB4, and are also loaded to AGO1-catalyzed RISC for cleavage of complementary mRNAs. Here, we use an artificial miRNA (amiRNA) technology, transiently expressed in Nicotiana benthamiana, to produce a series of amiRNA duplexes with differing intermolecular thermostabilities at the 5′ end of duplex strands. Analyses of amiRNA duplex strand accumulation and target transcript expression revealed that strand selection (amiRNA and amiRNA*) is directed by asymmetric thermostability of the duplex termini. The duplex strand possessing a lower 5′ thermostability was preferentially retained by RISC to guide mRNA cleavage of the corresponding target transgene. In addition, analysis of endogenous miRNA duplex strand accumulation in Arabidopsis drb1 and drb2345 mutant plants revealed that DRB1 dictates strand selection, presumably by directional loading of the miRNA duplex onto RISC for passenger strand degradation. Bioinformatic and Northern blot analyses of DCL4/DRB4-dependent small RNAs (miRNAs and siRNAs) revealed that small RNAs produced by this DCL/dsRBP combination do not conform to the same terminal thermostability rules as those governing DCL1/DRB1-processed miRNAs. This suggests that small RNA processing in the DCL1/DRB1-directed miRNA and DCL4/DRB4-directed sRNA biogenesis pathways operates via different mechanisms.
机译:在拟南芥(Arabidopsis)中,DICER-LIKE1(DCL1)与双链RNA结合蛋白(dsRBP)DRB1共同作用,以将前体转录本中的microRNA(miRNA)处理,然后再转移至RNA诱导的沉默复合体中。 (RISC)。加载miRNA的RISC通过ARGONAUTE1(AGO1)催化的切割指导同源mRNA的RNA沉默。 DCL / dsRBP合作伙伴DCL4 / DRB4从病毒衍生或转基因编码的双链RNA(dsRNA)分子中加工短解指RNA(siRNA),并也装载到AGO1催化的RISC中以切割互补的mRNA。 。在这里,我们使用在本氏烟草中瞬时表达的人工miRNA(amiRNA)技术来产生一系列在双链5'端具有不同分子间热稳定性的amiRNA双链体。 amiRNA双链体的积累和目标转录物表达的分析表明,链选择(amiRNA和amiRNA *)是由双链体末端的不对称热稳定性指导的。 RISC优先保留了具有较低5'热稳定性的双链,以指导相应目标转基因的mRNA切割。此外,对拟南芥属drb1和drb2345突变植物中内源性miRNA双链体积累的分析表明,DRB1决定了链的选择,大概是通过将miRNA双链体定向加载到RISC上来进行客链降解。对DCL4 / DRB4依赖性小RNA(miRNA和siRNA)的生物信息学和Northern印迹分析表明,这种DCL / dsRBP组合产生的小RNA与控制DCL1 / DRB1处理的miRNA的末端热稳定性规则不同。这表明在DCL1 / DRB1指导的miRNA和DCL4 / DRB4指导的sRNA生物发生途径中的小RNA加工通过不同的机制进行。

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