bioRxiv · 10.1101/2024.04.14.589453
The transcripts of a gastrula-premarked enhancer prime posterior tissue development through cross-talk with morphogen effector
Abstract
The regulatory mechanisms governing cell fate determination, particularly lineage diversification during mammalian embryonic development, remain poorly understood with in-depth regulatory paradigms yet to be fully elucidated. Here, leveraging the epigenetic landscape of mouse gastrula, we identified p-Enh, a pre-marked enhancer in primitive streak region, as pivotal regulator for posterior tissue development in mouse embryos. Morphological and single-cell transcriptomic analyses confirmed embryonic lethality phenotype with disrupted posterior tissue development trajectories in p-Enh-KO embryos. Molecularly, apart from regulating the neighboring coding-gene Cdx2 in cis, our findings suggest that p-Enh also modulate the global transcriptome and epigenomic landscape, which might through the transient production of eRNA in trans. Further investigation revealed p-Enh participate in the regulatory cascades of TGF-{beta} signaling. Chemical modulation of TGF-{beta} signaling can largely rescue the posterior development deficiency in in vitro gastruloids through a Cdx2-independent mechanism. Thus, we propose a potential model in which the broadly distributed p-Enh transcripts within the nucleus could serve as essential cross-modular coordinators, priming the posterior development of mouse embryo.
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Chen, Y., Tan, F., Yang, X., Fang, Q., Zhang, L., Liao, J., Shen, P., Qian, Y., Wen, M., Song, R., Fu, Y., Xu, H. J., Wang, R., Li, C., Shao, Z., Li, J., Jing, N.. 2024-04-17. The transcripts of a gastrula-premarked enhancer prime posterior tissue development through cross-talk with morphogen effector. https://doi.org/10.1101/2024.04.14.589453
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