microRNA通过典型种子位点调控的特性和动力学。

Jerry S Chen, Arra C Revilla, Michael Guerrero, Abygail M Gumbayan, Robert W Zeller
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引用次数: 0

摘要

MicroRNAs是参与转录后基因调控的一类基本小rna;然而,动物体内microrna调控其基因靶标的机制仍然知之甚少。实际上,了解microRNA结合和调控的机制对于合理设计基于microRNA的RNA干扰载体至关重要。在本报告中,我们将重点关注已知的最大一类microRNA靶点,即规范种子靶点,并在蛋白质水平上探索体内调节靶点下调的因素。利用海鞘(Ciona inteinalis)体内传感器实验,我们量化了mir -124介导的从海鞘基因组克隆的38个典型种子靶点以及10个对照非靶点的下调。支持先前的研究结果,我们观察到种子类型和种子位点数量与下调相关。然而,在同一种子类别的靶标中,观察到下调水平的差异高达50%,这表明非种子因素在调节下调中起作用。虽然我们在实验中没有观察到先前报道的非种子决定因素与饱和状态下下调水平的显著相关性,但我们的数据表明,两个先前确定的因素,二级结构和3'端互补性,可能在microRNA-target结合的初始动力学中发挥作用。重要的是,使用不同浓度的miR-124,我们发现剂量依赖性靶标下调谱遵循Michaelis-Menten动力学。总之,在研究内源性microRNA调控机制时,我们的研究结果强调了非种子因子的重要性以及microRNA相对于其靶点的细胞浓度的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Properties and kinetics of microRNA regulation through canonical seed sites.

Properties and kinetics of microRNA regulation through canonical seed sites.

Properties and kinetics of microRNA regulation through canonical seed sites.

Properties and kinetics of microRNA regulation through canonical seed sites.

MicroRNAs are a fundamental class of small RNAs involved in post-transcriptional gene regulation; however, the mechanism by which microRNAs regulate their gene targets in animals remains poorly understood. Practically, a mechanistic understanding of microRNA binding and regulation is crucial for the rational design of microRNA-based vectors for RNA interference. In this report, we focus on the largest known class of microRNA targets, the canonical seed targets, and explore the factors involved in modulating target downregulation in vivo at the protein level. Using an in vivo sensor assay in the ascidian Ciona intestinalis, we quantify miR-124-mediated downregulation of 38 canonical seed targets cloned from the Ciona genome as well as 10 control non-targets. Supporting previous findings, we observed that the seed type and number of seed sites are correlated with downregulation. However, up to a 50% variation in downregulation levels was observed for targets within the same seed class, indicating a role of non-seed factors in modulating downregulation. Although we did not observe a significant correlation of previously reported non-seed determinants with downregulation levels at saturation in our assay, our data suggest that two previously identified factors, secondary structure and 3'end complementarity, may play a role in the initial kinetics of microRNA-target binding. Importantly, using different concentrations of miR-124 we show that dose-dependent target downregulation profiles follow Michaelis-Menten kinetics. In summary, our findings emphasize the importance of non-seed factors as well as the importance of cellular concentrations of microRNAs relative to their targets when studying the mechanisms of endogenous microRNA regulation.

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