TET activity safeguards pluripotency throughout embryonic dormancy

Author:

Stötzel Maximilian,Cheng Chieh-Yu,IIik Ibrahim A.,Kumar Abhishek SampathORCID,Omgba Persia Akbari,van der Weijden Vera A.ORCID,Zhang Yufei,Vingron MartinORCID,Meissner AlexanderORCID,Aktaş TuğçeORCID,Kretzmer HeleneORCID,Bulut-Karslioğlu AydanORCID

Abstract

AbstractDormancy is an essential biological process for the propagation of many life forms through generations and stressful conditions. Early embryos of many mammals are preservable for weeks to months within the uterus in a dormant state called diapause, which can be induced in vitro through mTOR inhibition. Cellular strategies that safeguard original cell identity within the silent genomic landscape of dormancy are not known. Here we show that the protection of cis-regulatory elements from silencing is key to maintaining pluripotency in the dormant state. We reveal a TET–transcription factor axis, in which TET-mediated DNA demethylation and recruitment of methylation-sensitive transcription factor TFE3 drive transcriptionally inert chromatin adaptations during dormancy transition. Perturbation of TET activity compromises pluripotency and survival of mouse embryos under dormancy, whereas its enhancement improves survival rates. Our results reveal an essential mechanism for propagating the cellular identity of dormant cells, with implications for regeneration and disease.

Publisher

Springer Science and Business Media LLC

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1. Embryos burn fat in standby;Trends in Cell Biology;2024-09

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