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MiRNA sensitivity to Drosha levels correlates with pre-miRNA secondary structure

机译:MiRNA对Drosha水平的敏感性与前miRNA二级结构相关

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microRNAs (miRNAs) are crucial for cellular development and homeostasis. In order to better understand regulation of miRNA biosynthesis, we studied cleavage of primary miRNAs by Drosha. While Drosha knockdown triggers an expected decrease of many mature miRNAs in human embryonic stem cells (hESC), a subset of miRNAs are not reduced. Statistical analysis of miRNA secondary structure and fold change of expression in response to Drosha knockdown showed that absence of mismatches in the central region of the hairpin, 5 and 9-12 nt from the Drosha cutting site conferred decreased sensitivity to Drosha knockdown. This suggests that, when limiting, Drosha processes miRNAs without mismatches more efficiently than mismatched miRNAs. This is important because Drosha expression changes over cellular development and the fold change of expression for miRNAs with mismatches in the central region correlates with Drosha levels. To examine the biochemical relationship directly, we overexpressed structural variants of miRNA-145, miRNA-137, miRNA-9, and miRNA-200b in HeLa cells with and without Drosha knockdown; for these miRNAs, elimination of mismatches in the central region increased, and addition of mismatches decreased their expression in an in vitro assay and in cells with low Drosha expression. Change in Drosha expression can be a biologically relevant mechanism by which eukaryotic cells control miRNA profiles. This phenomenon may explain the impact of point mutations outside the seed region of certain miRNAs.
机译:microRNA(miRNA)对于细胞发育和体内平衡至关重要。为了更好地了解miRNA生物合成的调控,我们研究了Drosha对一级miRNA的切割。虽然Drosha敲低触发了人类胚胎干细胞(hESC)中许多成熟miRNA的预期减少,但miRNA的一个子集并未减少。对Drosha敲低响应的miRNA二级结构和表达倍数变化的统计分析表明,发夹中心区域不存在错配,距离Drosha切割位点5和9-12 nt,降低了对Drosha敲低的敏感性。这表明,在限制条件下,Drosha可以比错配的miRNA更有效地处理无错配的miRNA。这很重要,因为Drosha表达随细胞发育而变化,而在中央区域错配的miRNA的表达倍数变化与Drosha水平相关。为了直接检查生化关系,我们在有或没有Drosha敲除的HeLa细胞中过表达了miRNA-145,miRNA-137,miRNA-9和miRNA-200b的结构变体。对于这些miRNA,在体外测定和低Drosha表达的细胞中,消除中央区域的错配增加,并且错配的增加降低了它们的表达。 Drosha表达的变化可能是真核细胞控制miRNA谱的生物学相关机制。这种现象可能解释了某些miRNA种子区域之外的点突变的影响。

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