Zinc finger homeobox-3 (ZFHX3) orchestrates genome-wide daily gene expression in the suprachiasmatic nucleus.

IF 6.4 1区 生物学 Q1 BIOLOGY
eLife Pub Date : 2025-03-21 DOI:10.7554/eLife.102019
Akanksha Bafna, Gareth Banks, Vadim Vasilyev, Robert Dallmann, Michael H Hastings, Patrick M Nolan
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Abstract

The mammalian suprachiasmatic nucleus (SCN), situated in the ventral hypothalamus, directs daily cellular and physiological rhythms across the body. The SCN clockwork is a self-sustaining transcriptional-translational feedback loop (TTFL) that in turn coordinates the expression of clock-controlled genes (CCGs) directing circadian programmes of SCN cellular activity. In the mouse, the transcription factor, ZFHX3 (zinc finger homeobox-3), is necessary for the development of the SCN and influences circadian behaviour in the adult. The molecular mechanisms by which ZFHX3 affects the SCN at transcriptomic and genomic levels are, however, poorly defined. Here, we used chromatin immunoprecipitation sequencing to map the genomic localization of ZFHX3-binding sites in SCN chromatin. To test for function, we then conducted comprehensive RNA sequencing at six distinct times-of-day to compare the SCN transcriptional profiles of control and ZFHX3-conditional null mutants. We show that the genome-wide occupancy of ZFHX3 occurs predominantly around gene transcription start sites, co-localizing with known histone modifications, and preferentially partnering with clock transcription factors (CLOCK, BMAL1) to regulate clock gene(s) transcription. Correspondingly, we show that the conditional loss of ZFHX3 in the adult has a dramatic effect on the SCN transcriptome, including changes in the levels of transcripts encoding elements of numerous neuropeptide neurotransmitter systems while attenuating the daily oscillation of the clock TF Bmal1. Furthermore, various TTFL genes and CCGs exhibited altered circadian expression profiles, consistent with an advanced in daily behavioural rhythms under 12 h light-12 h dark conditions. Together, these findings reveal the extensive genome-wide regulation mediated by ZFHX3 in the central clock that orchestrates daily timekeeping in mammals.

锌指同源盒-3 (ZFHX3)协调视交叉上核全基因组日常基因表达。
哺乳动物视交叉上核(SCN)位于下丘脑腹侧,指导全身的日常细胞和生理节律。SCN时钟系统是一个自我维持的转录-翻译反馈回路(TTFL),它反过来协调时钟控制基因(CCGs)的表达,指导SCN细胞活动的昼夜节律程序。在小鼠中,转录因子ZFHX3(锌指同源盒-3)是SCN发育所必需的,并影响成人的昼夜行为。然而,ZFHX3在转录组学和基因组水平上影响SCN的分子机制尚不明确。在这里,我们使用染色质免疫沉淀测序来定位SCN染色质中zfhx3结合位点的基因组定位。为了测试功能,我们在一天中的六个不同时间进行了全面的RNA测序,以比较对照和zfhx3条件零突变体的SCN转录谱。我们发现ZFHX3的全基因组占用主要发生在基因转录起始位点周围,与已知组蛋白修饰共定位,并优先与时钟转录因子(clock, BMAL1)合作调节时钟基因的转录。相应地,我们发现成人ZFHX3的条件缺失对SCN转录组有显著影响,包括编码许多神经肽神经递质系统元件的转录本水平的变化,同时减弱时钟TF Bmal1的日常振荡。此外,各种TTFL基因和CCGs表现出改变的昼夜节律表达谱,这与12小时光照-12小时黑暗条件下每日行为节律的advance一致。总之,这些发现揭示了由ZFHX3介导的广泛的全基因组调控在哺乳动物的中央时钟中协调日常计时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
eLife
eLife BIOLOGY-
CiteScore
12.90
自引率
3.90%
发文量
3122
审稿时长
17 weeks
期刊介绍: eLife is a distinguished, not-for-profit, peer-reviewed open access scientific journal that specializes in the fields of biomedical and life sciences. eLife is known for its selective publication process, which includes a variety of article types such as: Research Articles: Detailed reports of original research findings. Short Reports: Concise presentations of significant findings that do not warrant a full-length research article. Tools and Resources: Descriptions of new tools, technologies, or resources that facilitate scientific research. Research Advances: Brief reports on significant scientific advancements that have immediate implications for the field. Scientific Correspondence: Short communications that comment on or provide additional information related to published articles. Review Articles: Comprehensive overviews of a specific topic or field within the life sciences.
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