Ono Masahiro, Crompton Tessa
Department of Life Sciences, Imperial College London, London SW7 2AZ, UK.
Great Ormond Street Institute of Child Health, University College London, London WC1N 1EH, UK.
Development. 2024 Dec 15;151(24). doi: 10.1242/dev.204255. Epub 2024 Dec 18.
Progenitor cells initiate development upon receiving key signals, dynamically altering gene and protein expression to diverge into various lineages and fates. Despite the use of several experimental approaches, including the Fluorescent Timer-based method Timer-of-cell-kinetics-and-activity (Tocky), analysing time-dependent processes at the single-cell level in vivo remains challenging. This study introduces a novel integrated experimental and computational approach, using an advanced multidimensional toolkit. This toolkit facilitates the simultaneous examination of temporal progression and T-cell profiles using high-dimensional flow cytometric data. Employing novel algorithms based on canonical correspondence analysis and network analysis, our toolkit identifies developmental trajectories and analyses dynamic changes in developing cells. The efficacy of this approach is demonstrated by analysing thymic T cells from Nr4a3-Tocky mice, which monitor activities downstream of the T-cell receptor (TCR) signal. Further validation was achieved by deleting the proapoptotic gene Bcl2l11 in Nr4a3-Tocky mice. This revealed dynamic changes in thymic T cells during cellular development and negative selection following TCR signalling. Overall, this study establishes a new method for analysing the temporal dynamics of individual developing cells in response to in vivo signalling cues.
祖细胞在接收到关键信号后启动发育,动态改变基因和蛋白质表达,从而分化为各种谱系和命运。尽管使用了多种实验方法,包括基于荧光定时器的细胞动力学和活性定时器(Tocky)方法,但在体内单细胞水平分析时间依赖性过程仍然具有挑战性。本研究引入了一种新颖的综合实验和计算方法,使用了先进的多维工具包。该工具包有助于利用高维流式细胞术数据同时检查时间进程和T细胞谱。通过基于典范对应分析和网络分析的新颖算法,我们的工具包识别发育轨迹并分析发育中细胞的动态变化。通过分析来自Nr4a3-Tocky小鼠的胸腺T细胞证明了该方法的有效性,这些小鼠监测T细胞受体(TCR)信号下游的活性。通过在Nr4a3-Tocky小鼠中删除促凋亡基因Bcl2l11实现了进一步验证。这揭示了胸腺T细胞在细胞发育过程中的动态变化以及TCR信号传导后的阴性选择。总体而言,本研究建立了一种新方法,用于分析单个发育中细胞响应体内信号线索的时间动态。