<b>Chromatin Dynamics and Transcriptional Regulation of Heat Stress in an Ectothermic Fish</b>
收藏DataCite Commons2025-05-15 更新2025-09-08 收录
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https://figshare.com/articles/dataset/_b_Chromatin_Dynamics_and_Transcriptional_Regulation_of_Heat_Stress_in_an_Ectothermic_Fish_b_/27936618/1
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Global warming and extreme heat events threaten ectothermic animals, yet the molecular mechanisms of heat stress (HS) on transcriptional regulation, particularly associated chromatin accessibility dynamics, remain unclear. Here, we investigated chromatin accessibility and transcriptional dynamics in the brain, gill, and head kidney of <i>Micropterus salmoides</i> under gradient heat stress. We found significant HS-induced apoptosis in the head kidney. Transcriptome analysis identified key pathways associated with endoplasmic reticulum (ER) stress, ferroptosis, and apoptosis. Integrating <i>cis</i>-regulatory element analysis and transcription factor (TF) binding predictions, we constructed a transcriptional regulatory network (TRN) for ER stress and apoptosis, identifying 259 TFs, including both known and newly discovered transcriptional regulators. Among these, CCCTC-binding factor (CTCF) and activating transcription factor 4 (ATF4) emerged as central regulators, dynamically controlling stress-responsive genes (<i>eif2ak1</i>, <i>hsp90b1</i>, <i>hspa5</i>, and <i>tfr1aI</i>) driving ER stress and apoptosis. Enhanced nuclear expression of CTCF under heat stress, experimentally validated, highlights its pivotal regulatory role. These findings uncover mechanisms of ER stress regulation in fish under HS, positioning CTCF and ATF4 as hub regulatory factors in chromatin remodeling and transcriptional regulation response to heat stress in ectotherms.
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2025-05-13



