Although precise tuning of gene expression levels is critical for most developmental pathways, the mechanisms by which the transcriptional output of dosage-sensitive molecules is established or modulated by the environment remain poorly understood. Here, we provide a mechanistic framework for how the conserved transcription factor BLMP-1/Blimp1 operates as a pioneer factor to decompact chromatin near its target loci during embryogenesis (hours prior to major transcriptional activation) and, by doing so, regulates both the duration and amplitude of subsequent target gene transcription during post-embryonic development. This priming mechanism is genetically separable from the mechanisms that establish the timing of transcriptional induction and functions to canalize aspects of cell-fate specification, animal size regulation, and molting. A key feature of the BLMP-1-dependent transcriptional priming mechanism is that chromatin decompaction is initially established during embryogenesis and maintained throughout larval development by nutrient sensing. This anticipatory mechanism integrates transcriptional output with environmental conditions and is essential for resuming normal temporal patterning after animals exit nutrient-mediated developmental arrests.
An Epigenetic Priming Mechanism Mediated by Nutrient Sensing Regulates Transcriptional Output during C. elegans Development.
营养感知介导的表观遗传启动机制调节秀丽隐杆线虫发育过程中的转录输出
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作者:Stec Natalia, Doerfel Katja, Hills-Muckey Kelly, Ettorre Victoria M, Ercan Sevinc, Keil Wolfgang, Hammell Christopher M
| 期刊: | Current Biology | 影响因子: | 7.500 |
| 时间: | 2021 | 起止号: | 2021 Feb 22; 31(4):809-826 |
| doi: | 10.1016/j.cub.2020.11.060 | 研究方向: | 表观遗传 |
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