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A timer for analyzing temporally dynamic changes in transcription during differentiation in vivo.


ABSTRACT: Understanding the mechanisms of cellular differentiation is challenging because differentiation is initiated by signaling pathways that drive temporally dynamic processes, which are difficult to analyze in vivo. We establish a new tool, Timer of cell kinetics and activity (Tocky; or toki [time in Japanese]). Tocky uses the fluorescent Timer protein, which spontaneously shifts its emission spectrum from blue to red, in combination with computer algorithms to reveal the dynamics of differentiation in vivo. Using a transcriptional target of T cell receptor (TCR) signaling, we establish Nr4a3-Tocky to follow downstream effects of TCR signaling. Nr4a3-Tocky reveals the temporal sequence of events during regulatory T cell (Treg) differentiation and shows that persistent TCR signals occur during Treg generation. Remarkably, antigen-specific T cells at the site of autoimmune inflammation also show persistent TCR signaling. In addition, by generating Foxp3-Tocky, we reveal the in vivo dynamics of demethylation of the Foxp3 gene. Thus, Tocky is a tool for cell biologists to address previously inaccessible questions by directly revealing dynamic processes in vivo.

SUBMITTER: Bending D 

PROVIDER: S-EPMC6080944 | biostudies-literature | 2018 Aug

REPOSITORIES: biostudies-literature

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A timer for analyzing temporally dynamic changes in transcription during differentiation in vivo.

Bending David D   Prieto Martín Paz P   Paduraru Alina A   Ducker Catherine C   Marzaganov Erik E   Laviron Marie M   Kitano Satsuki S   Miyachi Hitoshi H   Crompton Tessa T   Ono Masahiro M  

The Journal of cell biology 20180625 8


Understanding the mechanisms of cellular differentiation is challenging because differentiation is initiated by signaling pathways that drive temporally dynamic processes, which are difficult to analyze in vivo. We establish a new tool, Timer of cell kinetics and activity (Tocky; or toki [time in Japanese]). Tocky uses the fluorescent Timer protein, which spontaneously shifts its emission spectrum from blue to red, in combination with computer algorithms to reveal the dynamics of differentiation  ...[more]

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