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Spliceosome disassembly factors ILP1 and NTR1 promote miRNA biogenesis in Arabidopsis thaliana

机译:剪接体分解因子ILP1和NTR1促进拟南芥中的miRNA生物发生。

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摘要

The intron-lariat spliceosome (ILS) complex is highly conserved among eukaryotes, and its disassembly marks the end of a canonical splicing cycle. In this study, we show that two conserved disassembly factors of the ILS complex, Increased Level of Polyploidy1-1D (ILP1) and NTC-Related protein 1 (NTR1), positively regulate microRNA (miRNA) biogenesis by facilitating transcriptional elongation of MIRNA (MIR) genes in Arabidopsis thaliana. ILP1 and NTR1 formed a stable complex and co-regulated alternative splicing of more than a hundred genes across the Arabidopsis genome, including some primary transcripts of miRNAs (pri-miRNAs). Intriguingly, pri-miRNAs, regardless of having introns or not, were globally down-regulated when the ILP1 or NTR1 function was compromised. ILP1 and NTR1 interacted with core miRNA processing proteins Dicer-like 1 and Serrate, and were required for proper RNA polymerase II occupancy at elongated regions of MIR chromatin, without affecting either MIR promoter activity or pri-miRNA decay. Our results provide further insights into the regulatory role of spliceosomal machineries in the biogenesis of miRNAs.
机译:内含子-lariat剪接体(ILS)复合体在真核生物中高度保守,其拆卸标志着经典剪接循环的结束。在这项研究中,我们显示了ILS复合物的两个保守的拆卸因子,即多倍体1-1D(ILP1)和NTC相关蛋白1(NTR1)的水平升高,通过促进MIRNA(MIR)的转录延长,正调控microRNA(miRNA)的生物发生。 )拟南芥中的基因。 ILP1和NTR1形成了一个稳定的复合物,并在整个拟南芥基因组中共调控了一百多个基因的选择性剪接,包括miRNA(pri-miRNA)的一些主要转录本。有趣的是,当ILP1或NTR1功能受到损害时,无论是否具有内含子,pri-miRNA都会被下调。 ILP1和NTR1与核心miRNA加工蛋白Dicer-like 1和Serrate相互作用,是在MIR染色质的延长区域正确占据RNA聚合酶II所必需的,而不影响MIR启动子活性或pri-miRNA衰减。我们的结果提供了进一步的见解,在miRNA的生物发生中剪接体机制的调控作用。

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