Light-regulated microRNAs shape dynamic gene expression in the zebrafish circadian clock.

IF 4 2区 生物学 Q1 GENETICS & HEREDITY PLoS Genetics Pub Date : 2025-01-08 eCollection Date: 2025-01-01 DOI:10.1371/journal.pgen.1011545
Zuo Wang, Shuang Wang, Yi Bi, Alessandra Boiti, Shengxiang Zhang, Daniela Vallone, Xianyong Lan, Nicholas S Foulkes, Haiyu Zhao
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Abstract

A key property of the circadian clock is that it is reset by light to remain synchronized with the day-night cycle. An attractive model to explore light input to the circadian clock in vertebrates is the zebrafish. Circadian clocks in zebrafish peripheral tissues and even zebrafish-derived cell lines are entrainable by direct light exposure thus providing unique insight into the function and evolution of light regulatory pathways. Our previous work has revealed that light-induced gene transcription is a key step in the entrainment of the circadian clock as well as enabling the more general adaptation of zebrafish cells to sunlight exposure. However, considerable evidence points to post-transcriptional regulatory mechanisms, notably microRNAs (miRNAs), playing an essential role in shaping dynamic changes in mRNA levels. Therefore, does light directly impact the function of miRNAs? Are there light-regulated miRNAs and if so, which classes of mRNA do they target? To address these questions, we performed a complete sequencing analysis of light-induced changes in the zebrafish transcriptome, encompassing small non-coding RNAs as well as mRNAs. Importantly, we identified sets of light-regulated miRNAs, with many regulatory targets representing light-inducible mRNAs including circadian clock genes and genes involved in redox homeostasis. We subsequently focused on the light-responsive miR-204-3-3p and miR-430a-3p which are predicted to regulate the expression of cryptochrome genes (cry1a and cry1b). Luciferase reporter assays validated the target binding of miR-204-3-3p and miR-430a-3p to the 3'UTRs of cry1a and cry1b, respectively. Furthermore, treatment with mimics and inhibitors of these two miRNAs significantly affected the dynamic expression of their target genes but also other core clock components (clock1a, bmal1b, per1b, per2, per3), as well as the rhythmic locomotor activity of zebrafish larvae. Thus, our identification of light-responsive miRNAs reveals new intricacy in the multi-level regulation of the circadian clockwork by light.

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光调节的microrna在斑马鱼生物钟中塑造动态基因表达。
昼夜节律钟的一个关键特性是,它被光重置,以保持与昼夜周期同步。斑马鱼是探索脊椎动物生物钟的光输入的一个有吸引力的模型。斑马鱼外周组织甚至斑马鱼衍生细胞系的昼夜节律时钟可被直接光照射,从而为光调节途径的功能和进化提供了独特的见解。我们之前的工作表明,光诱导基因转录是昼夜节律时钟的一个关键步骤,也是斑马鱼细胞对阳光照射更普遍的适应。然而,大量证据表明转录后调控机制,特别是microRNAs (miRNAs),在形成mRNA水平的动态变化中起着至关重要的作用。那么,光是否会直接影响mirna的功能呢?是否存在光调控的mirna,如果存在,它们针对的是哪类mRNA ?为了解决这些问题,我们对斑马鱼转录组的光诱导变化进行了完整的测序分析,包括小的非编码rna和mrna。重要的是,我们确定了一系列光调控的mirna,其中许多调控靶点代表了光诱导的mrna,包括昼夜节律钟基因和参与氧化还原稳态的基因。我们随后将重点放在光响应性miR-204-3-3p和miR-430a-3p上,它们被预测可以调节隐色素基因(cry1a和cry1b)的表达。荧光素酶报告基因检测证实了miR-204-3-3p和miR-430a-3p分别与cry1a和cry1b的3' utr结合。此外,用这两种mirna的模拟物和抑制剂处理显著影响了它们的靶基因的动态表达,以及其他核心时钟成分(clock1a, bmal1b, per1b, per2, per3),以及斑马鱼幼虫的节律运动活动。因此,我们对光响应性mirna的鉴定揭示了光对生物钟的多层次调节的新复杂性。
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PLoS Genetics
PLoS Genetics GENETICS & HEREDITY-
自引率
2.20%
发文量
438
期刊介绍: PLOS Genetics is run by an international Editorial Board, headed by the Editors-in-Chief, Greg Barsh (HudsonAlpha Institute of Biotechnology, and Stanford University School of Medicine) and Greg Copenhaver (The University of North Carolina at Chapel Hill). Articles published in PLOS Genetics are archived in PubMed Central and cited in PubMed.
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