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Cytoplasmic Drosha activity generated by alternative splicing

机译:选择性剪接产生的细胞质Drosha活性

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RNase III enzyme Drosha interacts with DGCR8 to form the Microprocessor, initiating canonical microRNA (miRNA) maturation in the nucleus. Here, we re-evaluated where Drosha functions in cells using Drosha and/or DGCR8 knock out (KO) cells and cleavage reporters. Interestingly, a truncated Drosha mutant located exclusively in the cytoplasm cleaved pri-miRNA effectively in a DGCR8-dependent manner. In addition, we demonstrated that in vitro generated pri-miRNAs when transfected into cells could be processed to mature miRNAs in the cytoplasm. These results indicate the existence of cytoplasmic Drosha (c-Drosha) activity. Although a subset of endogenous pri-miRNAs become enriched in the cytoplasm of Drosha KO cells, it remains unclear whether pri-miRNA processing is the main function of c-Drosha. We identified two novel in-frame Drosha isoforms generated by alternative splicing in both HEK293T and HeLa cells. One isoform loses the putative nuclear localization signal, generating c-Drosha. Further analysis indicated that the c-Drosha isoform is abundant in multiple cell lines, dramatically variable among different human tissues and upregulated in multiple tumors, suggesting that c-Drosha plays a unique role in gene regulation. Our results reveal a new layer of regulation on the miRNA pathway and provide novel insights into the ever-evolving functions of Drosha.
机译:RNase III酶Drosha与DGCR8相互作用以形成微处理器,从而启动细胞核中的规范microRNA(miRNA)成熟。在这里,我们使用Drosha和/或DGCR8敲除(KO)细胞和裂解报告基因重新评估了Drosha在细胞中的功能。有趣的是,仅位于细胞质中的截短的Drosha突变体以DGCR8依赖性方式有效切割了pri-miRNA。此外,我们证明了体外转染到细胞中时产生的pri-miRNA可以在细胞质中加工成成熟的miRNA。这些结果表明细胞质Drosha(c-Drosha)活性的存在。尽管内源性pri-miRNA的一部分在Drosha KO细胞的细胞质中富集,但仍不清楚pri-miRNA加工是否是c-Drosha的主要功能。我们确定了HEK293T和HeLa细胞中的选择性剪接产生的两个新颖的帧内Drosha亚型。一种同工型失去假定的核定位信号,生成c-Drosha。进一步的分析表明,c-Drosha亚型在多种细胞系中丰富,在不同的人体组织中差异很大,并且在多种肿瘤中上调,这表明c-Drosha在基因调控中起独特作用。我们的结果揭示了miRNA途径的新调控层,并为Drosha不断发展的功能提供了新颖的见解。

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    《Nucleic Acids Research》 |2016年第21期|共13页
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