Division of Developmental Biology and Medicine, School of Medical Sciences, Faculty of Biology, Medicine and Health, The University of Manchester, Oxford Road, Manchester, M13 9PT, UK.
Division of Informatics, Imaging and Data Sciences, Faculty of Biology, Medicine and Health, The University of Manchester, Oxford Road, Manchester M13 9PT, UK.
Development. 2022 Oct 1;149(19). doi: 10.1242/dev.200474. Epub 2022 Oct 3.
MicroRNAs (miRs) have an important role in tuning dynamic gene expression. However, the mechanism by which they are quantitatively controlled is unknown. We show that the amount of mature miR-9, a key regulator of neuronal development, increases during zebrafish neurogenesis in a sharp stepwise manner. We characterize the spatiotemporal profile of seven distinct microRNA primary transcripts (pri-mir)-9s that produce the same mature miR-9 and show that they are sequentially expressed during hindbrain neurogenesis. Expression of late-onset pri-mir-9-1 is added on to, rather than replacing, the expression of early onset pri-mir-9-4 and -9-5 in single cells. CRISPR/Cas9 mutation of the late-onset pri-mir-9-1 prevents the developmental increase of mature miR-9, reduces late neuronal differentiation and fails to downregulate Her6 at late stages. Mathematical modelling shows that an adaptive network containing Her6 is insensitive to linear increases in miR-9 but responds to stepwise increases of miR-9. We suggest that a sharp stepwise increase of mature miR-9 is created by sequential and additive temporal activation of distinct loci. This may be a strategy to overcome adaptation and facilitate a transition of Her6 to a new dynamic regime or steady state.
微小 RNA(miRs)在调节动态基因表达方面发挥着重要作用。然而,它们的定量控制机制尚不清楚。我们发现,成熟 miR-9 的数量在斑马鱼神经发生过程中呈急剧的阶段性增加,miR-9 是神经元发育的关键调节因子。我们描述了七种不同的 microRNA 初级转录物(pri-miR)-9 的时空特征,它们产生相同的成熟 miR-9,并表明它们在后脑神经发生过程中依次表达。晚期 pri-miR-9-1 的表达是在单个细胞中早期表达的 pri-miR-9-4 和 -9-5 的补充,而不是取代。CRISPR/Cas9 突变晚期 pri-miR-9-1 会阻止成熟 miR-9 的发育性增加,减少晚期神经元分化,并未能在晚期下调 Her6。数学模型表明,包含 Her6 的自适应网络对 miR-9 的线性增加不敏感,但对 miR-9 的阶跃式增加有反应。我们认为,成熟 miR-9 的急剧阶跃式增加是通过不同位点的顺序和累加的时间激活产生的。这可能是一种策略,可以克服适应并促进 Her6 向新的动态状态或稳定状态的转变。