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miR-31 前体结构揭示了其在 Dicer-TRBP 复合物加工中的活跃作用。

Structure of pre-miR-31 reveals an active role in Dicer-TRBP complex processing.

机构信息

Biophysics Program, University of Michigan, Ann Arbor, MI 48109.

Department of Chemistry, University of Michigan, Ann Arbor, MI 48109.

出版信息

Proc Natl Acad Sci U S A. 2023 Sep 26;120(39):e2300527120. doi: 10.1073/pnas.2300527120. Epub 2023 Sep 19.

Abstract

As an essential posttranscriptional regulator of gene expression, microRNA (miRNA) levels must be strictly maintained. The biogenesis of many miRNAs is mediated by trans-acting protein partners through a variety of mechanisms, including remodeling of the RNA structure. miR-31 functions as an oncogene in numerous cancers, and interestingly, its biogenesis is not known to be regulated by protein-binding partners. Therefore, the intrinsic structural properties of the precursor element of miR-31 (pre-miR-31) can provide a mechanism by which its biogenesis is regulated. We determined the solution structure of pre-miR-31 to investigate the role of distinct structural elements in regulating processing by the Dicer-TRBP complex. We found that the presence or absence of mismatches within the helical stem does not strongly influence Dicer-TRBP processing of the pre-miRNAs. However, both the apical loop size and structure at the Dicing site are key elements for discrimination by the Dicer-TRBP complex. Interestingly, our NMR-derived structure reveals the presence of a triplet of base pairs that link the Dicer cleavage site and the apical loop. Mutational analysis in this region suggests that the stability of the junction region strongly influences processing by the Dicer-TRBP complex. Our results enrich our understanding of the active role that RNA structure plays in regulating miRNA biogenesis, which has direct implications for the control of gene expression.

摘要

作为基因表达的一种重要转录后调控因子,miRNA(microRNA)的水平必须严格维持。许多 miRNA 的生物发生是通过各种机制由反式作用蛋白伴侣介导的,包括 RNA 结构的重塑。miR-31 在许多癌症中作为癌基因发挥作用,有趣的是,其生物发生似乎不受蛋白结合伴侣的调节。因此,miR-31 前体(pre-miR-31)的固有结构特性可以提供一种调节其生物发生的机制。我们确定了 pre-miR-31 的溶液结构,以研究不同结构元件在调节 Dicer-TRBP 复合物加工中的作用。我们发现,螺旋茎内的错配的存在与否并不强烈影响 Dicer-TRBP 对 pre-miRNAs 的加工。然而,Dicing 位点的顶端环大小和结构都是 Dicer-TRBP 复合物区分的关键要素。有趣的是,我们的 NMR 衍生结构揭示了存在一个三连体碱基对,将 Dicer 切割位点与顶端环连接起来。该区域的突变分析表明,连接区的稳定性强烈影响 Dicer-TRBP 复合物的加工。我们的结果丰富了我们对 RNA 结构在调节 miRNA 生物发生中所起的积极作用的理解,这对基因表达的控制具有直接影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52b8/10523476/16d39a775b61/pnas.2300527120fig01.jpg

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