Department of Biomolecular Sciences, Weizmann Institute of Science, 7610001, Rehovot, Israel.
Nat Commun. 2021 Oct 8;12(1):5903. doi: 10.1038/s41467-021-26210-1.
Circadian clocks are self-sustained and cell-autonomous oscillators. They respond to various extracellular cues depending on the time-of-day and the signal intensity. Phase Transition Curves (PTCs) are instrumental in uncovering the full repertoire of responses to a given signal. However, the current methodologies for reconstructing PTCs are low-throughput, laborious, and resource- and time-consuming. We report here the development of an efficient and high throughput assay, dubbed Circadian Single-Cell Oscillators PTC Extraction (Circa-SCOPE) for generating high-resolution PTCs. This methodology relies on continuous monitoring of single-cell oscillations to reconstruct a full PTC from a single culture, upon a one-time intervention. Using Circa-SCOPE, we characterize the effects of various pharmacological and blood-borne resetting cues, at high temporal resolution and a wide concentration range. Thus, Circa-SCOPE is a powerful tool for comprehensive analysis and screening for circadian clocks' resetting cues, and can be valuable for basic as well as translational research.
生物钟是自我维持和细胞自主的振荡器。它们根据一天中的时间和信号强度对各种细胞外线索做出反应。相位转换曲线 (PTC) 对于揭示对给定信号的全部反应至关重要。然而,目前重建 PTC 的方法存在通量低、繁琐、资源和时间消耗大等问题。我们在这里报告了一种高效、高通量的测定方法的开发,该方法被称为生物钟单细胞振荡器 PTC 提取 (Circa-SCOPE),用于生成高分辨率的 PTC。该方法依赖于对单细胞振荡的连续监测,以便在单次干预后从单个培养物中重建完整的 PTC。使用 Circa-SCOPE,我们以高时间分辨率和宽浓度范围表征了各种药理学和血液传播重置线索的影响。因此,Circa-SCOPE 是分析和筛选生物钟重置线索的有力工具,对于基础研究和转化研究都具有重要价值。