Temporally discordant chromatin accessibility and DNA demethylation define short and long-term enhancer regulation during cell fate specification

时间上不一致的染色质可及性和 DNA 去甲基化决定了细胞命运决定过程中的短期和长期增强子调控

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作者:Lindsey N Guerin, Timothy J Scott, Jacqueline A Yap, Annelie Johansson, Fabio Puddu, Tom Charlesworth, Yilin Yang, Alan J Simmons, Ken S Lau, Rebecca A Ihrie, Emily Hodges0

Abstract

Epigenetic mechanisms govern the transcriptional activity of lineage-specifying enhancers; but recent work challenges the dogma that joint chromatin accessibility and DNA demethylation are prerequisites for transcription. To understand this paradox, we established a highly-resolved timeline of DNA demethylation, chromatin accessibility, and transcription factor occupancy during neural progenitor cell differentiation. We show thousands of enhancers undergo rapid, transient accessibility changes associated with distinct periods of transcription factor expression. However, most DNA methylation changes are unidirectional and delayed relative to chromatin dynamics, creating transiently discordant epigenetic states. Genome-wide detection of 5-hydroxymethylcytosine further revealed active demethylation begins ahead of chromatin and transcription factor activity, while enhancer hypomethylation persists long after these activities have dissipated. We demonstrate that these timepoint specific methylation states predict past, present and future chromatin accessibility using machine learning models. Thus, chromatin and DNA methylation collaborate on different timescales to mediate short and long-term enhancer regulation during cell fate specification.

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