Signal Transduction Laboratory, Life Sciences Research Unit, University of Luxembourg, Luxembourg.
RNA Biol. 2012 Jul;9(7):978-89. doi: 10.4161/rna.20494. Epub 2012 Jul 1.
MicroRNAs are major players in post-transcriptional gene regulation. Even small changes in miRNA levels may have profound consequences for the expression levels of target genes. Hence, miRNAs themselves need to be tightly, albeit dynamically, regulated. Here, we investigated the dynamic behavior of miRNAs over a wide time range following stimulation of melanoma cells with interferon-γ (IFN-γ), which activates the transcription factor STAT1. By applying several bioinformatic and statistical software tools for visualization and identification of differentially expressed miRNAs derived from time-series microarray experiments, 8.9% of 1105 miRNAs appeared to be directly or indirectly regulated by STAT1. Focusing on distinct dynamic expression patterns, we found that the majority of robust miRNA expression changes occurred in the intermediate time range (24-48 h). Three miRNAs (miR-27a, miR-30a, miR-34a) had a delayed regulation occurring at 72 h while none showed significant expression changes at early time points between 30 min and 6 h. Expression patterns of individual miRNAs were altered gradually over time or abruptly increased or decreased between two time points. Furthermore, we observed coordinated dynamic transcription of most miRNA clusters while few were found to be regulated independently of their genetic cluster. Most interestingly, several "star" or passenger strand sequences were specifically regulated over time while their "guide" strands were not.
microRNAs 是转录后基因调控的主要参与者。miRNA 水平的微小变化可能对靶基因的表达水平产生深远的影响。因此,miRNA 本身需要被紧密调控,尽管是动态的。在这里,我们研究了黑色素瘤细胞受到干扰素-γ(IFN-γ)刺激后,miRNA 在广泛的时间范围内的动态行为,IFN-γ 激活转录因子 STAT1。通过应用几种生物信息学和统计软件工具来可视化和识别来自时间序列微阵列实验的差异表达 miRNA,1105 个 miRNA 中的 8.9%似乎直接或间接受到 STAT1 的调控。关注不同的动态表达模式,我们发现大多数强大的 miRNA 表达变化发生在中间时间范围(24-48 小时)。三个 miRNA(miR-27a、miR-30a、miR-34a)的调节出现延迟,在 72 小时发生,而在 30 分钟到 6 小时的早期时间点没有显示出显著的表达变化。个别 miRNA 的表达模式随时间逐渐变化,或者在两个时间点之间急剧增加或减少。此外,我们观察到大多数 miRNA 簇的协调动态转录,而很少有簇被发现与其遗传簇无关地受到调控。最有趣的是,几个“星”或过客链序列随时间特异性调节,而其“引导”链不受调节。