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TockyLocus: quantitative analysis of flow cytometric fluorescent timer data in Nr4a3-Tocky and Foxp3-Tocky mice

Title: TockyLocus: quantitative analysis of flow cytometric fluorescent timer data in Nr4a3-Tocky and Foxp3-Tocky mice
Authors: Ono, Masahiro
Contributors: Cancer Research UK Programme Foundation; Medical Research Council; Biotechnology and Biological Sciences Research Council
Source: Biology Methods and Protocols ; volume 10, issue 1 ; ISSN 2396-8923
Publisher Information: Oxford University Press (OUP)
Publication Year: 2025
Description: Fluorescent Timer proteins undergo a time-dependent shift from blue to red fluorescence after translation, providing a temporal record of transcriptional activity in Timer reporter systems. While Timer proteins are well suited for studying dynamic cellular processes such as T cell activation using the Timer-of-Cell-Kinetics-and-Activity (Tocky) framework, quantitative analysis of Timer-based flow cytometry data has yet to be fully standardized. In this study, we optimize quantitative analysis methods for the key parameter within the Tocky framework, Timer Angle, and introduce TockyLocus, an open-source R package that implements a five-category scheme based on biologically grounded angular intervals (designated as Tocky Loci). This approach is validated using both simulated and experimental datasets and enables downstream statistical testing and visualization of transcriptional dynamics in flow cytometry data. Using computational modelling of Timer protein kinetics, we define transcriptional dynamics in relation to key anchoring points in Timer Angle values at 0°, 45°, and 90°. Comprehensive simulations with synthetic spike-in datasets further demonstrate the robustness of the five-locus approach, which captures the three key points and the intermediate regions between these points. Building on the TockyPrep preprocessing framework, we systematically evaluated categorization schemes ranging from three to seven loci on real-world datasets from Nr4a3-Tocky and Foxp3-Tocky mice. The five-locus model emerged as optimal, showing significant advantages in balancing biological interpretability and statistical robustness. Optimized algorithms implemented in the TockyLocus package now standardize quantitative analysis of Timer Angle data, enabling reproducible interpretation without reliance on arbitrary gating or complex assumptions. In summary, the five-locus categorization of Timer Angle data effectively links underlying biological dynamics to the percentage of cells in each Tocky Locus, providing a robust and ...
Document Type: article in journal/newspaper
Language: English
DOI: 10.1093/biomethods/bpaf060
DOI: 10.1093/biomethods/bpaf060/64249414/bpaf060.pdf
Availability: https://doi.org/10.1093/biomethods/bpaf060; https://academic.oup.com/biomethods/advance-article-pdf/doi/10.1093/biomethods/bpaf060/64249414/bpaf060.pdf; https://academic.oup.com/biomethods/article-pdf/10/1/bpaf060/64249414/bpaf060.pdf
Rights: https://creativecommons.org/licenses/by/4.0/
Accession Number: edsbas.96F23DA5
Database: BASE