Characteristic analysis of a secondary structure of primary microRNA bound to a double-strand RNA-binding protein, NF90

Takuma Higuchi, R. Kiernan, S. Sakamoto
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Abstract

unclear. In this study, we attempted to characterize the structure of NF90 binding pri-miRNAs by informatics analysis and RNA-electrophoretic mobility shift assay (RNA-EMSA). We used genome-wide approaches including ENCODE and small RNA-seq to identify pri-miRNAs that are associated with NF90. As a result, we found that NF90-targerted pri-miRNAs are highly stable, having a lower free energy and fewer mismatches compared to all pri-miRNAs. To confirm this, we performed RNA-EMSA probed with mutated pri-miRNAs. Pri-miR-3173 and pri-miR-186, the NF90-targeted pri-miRNA, were mutated to unstable structure by making bulges in the stem structure, whereas pri-miR-200a, which exhibits low affinity to NF90, was changed to more stable structure by forming long duplex in the stem. Consequently, we found that the mutated pri-miR-3173 and pri-miR-186 lead to a reduction in binding activity of NF90 to the pri-miRNAs. On the other hand, the binding affinity of NF90 to pri-miR-200a was dramatically elevated by forming the long duplex in the structure. These results suggest that NF90 preferentially binds pri-miRNAs having less mismatches and highly stable stem structure.
与双链rna结合蛋白NF90结合的初级microRNA二级结构的特征分析
不清楚。在这项研究中,我们试图通过信息学分析和rna -电泳迁移转移试验(RNA-EMSA)来表征NF90结合的pri- mirna的结构。我们使用全基因组方法,包括ENCODE和小RNA-seq来鉴定与NF90相关的pri- mirna。因此,我们发现nf90靶向的pri- mirna高度稳定,与所有的pri- mirna相比,具有较低的自由能和更少的错配。为了证实这一点,我们用突变的pri- mirna进行了RNA-EMSA检测。靶向NF90的pri-miRNA Pri-miR-3173和pri-miR-186通过在茎结构中形成凸起而突变为不稳定结构,而对NF90亲和力较低的pri-miR-200a通过在茎中形成长双工而转变为更稳定的结构。因此,我们发现突变的pri-miR-3173和pri-miR-186导致NF90与pri- mirna的结合活性降低。另一方面,NF90与pri-miR-200a的结合亲和力通过在结构中形成长双工而显著提高。这些结果表明NF90优先结合具有较少错配和高度稳定的茎结构的pri- mirna。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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