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增强子处刻板染色质构象的昼夜节律调控。

Circadian regulation of stereotypic chromatin conformations at enhancers.

作者信息

Nie Xinyu Y, Menet Jerome S

机构信息

Department of Biology, Center for Biological Clock Research, Texas A&M University, College Station, TX.

Interdisciplinary Program of Genetics, Texas A&M University, College Station, TX.

出版信息

bioRxiv. 2024 Apr 24:2024.04.24.590818. doi: 10.1101/2024.04.24.590818.

Abstract

Cooperation between the circadian transcription factor (TF) CLOCK:BMAL1 and other TFs at -regulatory elements (CREs) is critical to daily rhythms of transcription. Yet, the modalities of this cooperation are unclear. Here, we analyzed the co-binding of multiple TFs on single DNA molecules in mouse liver using single molecule footprinting (SMF). We found that SMF reads clustered in stereotypic chromatin states that reflect distinguishable organization of TFs and nucleosomes, and that were remarkably conserved between all samples. DNA protection at CLOCK:BMAL1 binding motif (E-box) varied between CREs, from E-boxes being solely bound by CLOCK:BMAL1 to situations where other TFs competed with CLOCK:BMAL1 for E-box binding. SMF also uncovered CLOCK:BMAL1 cooperative binding at E-boxes separated by 250 bp, which structurally altered the CLOCK:BMAL1-DNA interface. Importantly, we discovered multiple nucleosomes with E-boxes at entry/exit sites that were removed upon CLOCK:BMAL1 DNA binding, thereby promoting the formation of open chromatin states that facilitate DNA binding of other TFs and that were associated with rhythmic transcription. These results demonstrate the utility of SMF for studying how CLOCK:BMAL1 and other TFs regulate stereotypical chromatin states at CREs to promote transcription.

摘要

昼夜节律转录因子(TF)CLOCK:BMAL1与其他转录因子在顺式调控元件(CRE)处的合作对于转录的日常节律至关重要。然而,这种合作的方式尚不清楚。在这里,我们使用单分子足迹法(SMF)分析了小鼠肝脏中单个DNA分子上多种转录因子的共结合情况。我们发现,SMF读数聚集在刻板的染色质状态中,这些状态反映了转录因子和核小体的可区分组织,并且在所有样本之间都非常保守。CLOCK:BMAL1结合基序(E-box)处的DNA保护在不同的CRE之间有所不同,从仅由CLOCK:BMAL1结合的E-box到其他转录因子与CLOCK:BMAL1竞争E-box结合的情况。SMF还揭示了CLOCK:BMAL1在相隔250 bp的E-box处的协同结合,这在结构上改变了CLOCK:BMAL1-DNA界面。重要的是,我们发现了多个在进入/退出位点带有E-box的核小体,这些核小体在CLOCK:BMAL1与DNA结合时被移除,从而促进了开放染色质状态的形成,这种状态有利于其他转录因子的DNA结合,并与节律性转录相关。这些结果证明了SMF在研究CLOCK:BMAL1和其他转录因子如何调节CRE处的刻板染色质状态以促进转录方面的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92f5/11071494/022ee72db3e5/nihpp-2024.04.24.590818v1-f0001.jpg

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