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首页> 外文期刊>Developmental biology >Real-time in vivo monitoring of circadian E-box enhancer activity: A robust and sensitive zebrafish reporter line for developmental, chemical and neural biology of the circadian clock
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Real-time in vivo monitoring of circadian E-box enhancer activity: A robust and sensitive zebrafish reporter line for developmental, chemical and neural biology of the circadian clock

机译:昼夜节律生物E-box增强子活性的实时体内监测:用于昼夜节律生物的发育,化学和神经生物学的强大而敏感的斑马鱼报告基因系

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摘要

The circadian clock co-ordinates physiology and behavior with the dayight cycle. It consists of a transcriptional-translational feedback loop that generates self-sustained oscillations in transcriptional activity with a roughly 24. h period via E-box enhancer elements. Numerous in vivo aspects of core clock feedback loop function are still incompletely understood, including its maturation during development, tissue-specific activity and perturbation in disease states. Zebrafish are promising models for biomedical research due to their high regenerative capacity and suitability for in vivo drug screens, and transgenic zebrafish lines are valuable tools to study transcriptional activity in vivo during development. To monitor the activity of the core clock feedback loop in vivo, we created a transgenic zebrafish line expressing a luciferase reporter gene under the regulation of a minimal promoter and four E-boxes. This Tg(4. xE-box:Luc) line shows robust oscillating reporter gene expression both under light-dark cycles and upon release into constant darkness. Luciferase activity starts to oscillate during the first days of development, indicating that the core clock loop is already functional at an early stage. To test whether the Tg(4. xE-box:Luc) line could be used in drug screens aimed at identifying compounds that target the circadian clock in vivo, we examined drug effects on circadian period. We were readily able to detect period changes as low as 0.7. h upon treatment with the period-lengthening drugs lithium chloride and longdaysin in an assay set-up suitable for large-scale screens. Reporter gene mRNA expression is also detected in the adult brain and reveals differential clock activity across the brain, overlapping with endogenous clock gene expression. Notably, core clock activity is strongly correlated with brain regions where neurogenesis takes place and can be detected in several types of neural progenitors.Our results demonstrate that the Tg(4. xE-box:Luc) line is an excellent tool for studying the regulation of the circadian clock and its maturation in vivo and in real time. Furthermore, it is highly suitable for in vivo screens targeting the core clock mechanism that take into account the complexity of an intact organism. Finally, it allows mapping of clock activity in the brain of a vertebrate model organism with prominent adult neurogenesis and high regeneration capacity.
机译:昼夜节律协调昼夜周期的生理和行为。它由转录-翻译反馈环组成,该环通过E-box增强子元件在转录活动中以约24. h的周期产生自我维持的振荡。核心时钟反馈回路功能的许多体内方面仍未完全理解,包括其在发育中的成熟,组织特异性活性和疾病状态下的摄动。斑马鱼具有高的再生能力和对体内药物筛选的适用性,因此是生物医学研究的有希望的模型,而转基因斑马鱼品系是研究发育过程中体内转录活性的有价值的工具。为了监测体内核心时钟反馈回路的活动,我们创建了一个在最小启动子和四个E-box调控下表达荧光素酶报道基因的转基因斑马鱼品系。该Tg(4。xE-box:Luc)品系显示了在明暗循环下以及释放到恒定黑暗中时稳定的振荡报告基因表达。萤光素酶活性在发育的第一天开始振荡,这表明核心时钟循环在早期已经起作用。为了测试Tg(4。xE-box:Luc)产品线是否可以用于药物筛选,以鉴定靶向体内生物钟的化合物,我们研究了生物钟对药物的影响。我们很容易就能检测到低至0.7的周期变化。在适用于大规模筛选的测定装置中,用周期延长药物氯化锂和长日黄素处理后。在成人大脑中也检测到了报告基因的mRNA表达,并揭示了整个大脑的差异性时钟活动,与内源性时钟基因表达重叠。值得注意的是,核心时钟活动与发生神经发生的大脑区域密切相关,并且可以在几种类型的神经祖细胞中检测到。我们的结果表明,Tg(4。xE-box:Luc)系是研究调节作用的出色工具昼夜节律时钟的变化及其在体内和实时中的成熟度。此外,考虑到完整生物体的复杂性,它非常适用于针对核心时钟机制的体内筛选。最后,它可以绘制出具有显着成年神经发生和高再生能力的脊椎动物模型生物的大脑中的时钟活动图。

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