Department of Biology, Loyola University Chicago, Chicago, Illinois.
J Biol Rhythms. 2023 Feb;38(1):44-63. doi: 10.1177/07487304221138946. Epub 2022 Dec 10.
Organisms track time of day through the function of cell-autonomous molecular clocks. In addition to a central clock located in the brain, molecular clocks are present in most peripheral tissues. Circadian clocks are coordinated within and across tissues, but the manner through which this coordination is achieved is not well understood. We reasoned that the ability to track in vivo molecular clock activity in specific tissues of the fruit fly, , would facilitate an investigation into the relationship between different clock-containing tissues. Previous efforts to monitor clock gene expression in single flies in vivo have used regulatory elements of several different clock genes to dictate expression of a luciferase reporter enzyme, the activity of which can be monitored using a luminometer. Although these reporter lines have been instrumental in our understanding of the circadian system, they generally lack cell specificity, making it difficult to compare molecular clock oscillations between different tissues. Here, we report the generation of several novel lines of flies that allow for inducible expression of a luciferase reporter construct for clock gene transcriptional activity. We find that these lines faithfully report circadian transcription, as they exhibit rhythmic luciferase activity that is dependent on a functional molecular clock. Furthermore, we take advantage of our reporter lines' tissue specificity to demonstrate that peripheral molecular clocks are able to retain rhythmicity for multiple days under constant environmental conditions.
生物体通过细胞自主分子钟的功能来跟踪时间。除了位于大脑中的中央时钟外,分子钟还存在于大多数外周组织中。昼夜节律钟在组织内和组织间协调,但协调的方式尚不清楚。我们推断,能够在果蝇的特定组织中跟踪体内分子钟活性的能力将有助于研究不同含时钟组织之间的关系。以前,为了在体内监测单个果蝇的时钟基因表达,使用了几个不同时钟基因的调控元件来指示荧光素酶报告酶的表达,其活性可以使用发光计进行监测。虽然这些报告基因系在我们对生物钟系统的理解中发挥了重要作用,但它们通常缺乏细胞特异性,使得很难比较不同组织之间的分子钟振荡。在这里,我们报告了几种新型果蝇系的产生,这些果蝇系允许诱导表达用于时钟基因转录活性的荧光素酶报告构建体。我们发现这些系忠实地报告了昼夜转录,因为它们表现出依赖于功能分子钟的节律性荧光素酶活性。此外,我们利用我们的报告基因系的组织特异性来证明,在恒定的环境条件下,外周分子钟能够保持多天的节律性。