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转录因子 Sp2 增强 TALE 同源蛋白 Pbx1:Prep1 和组蛋白折叠域蛋白 Nf-y 与复合基因组位点的结合。

Transcription factor Sp2 potentiates binding of the TALE homeoproteins Pbx1:Prep1 and the histone-fold domain protein Nf-y to composite genomic sites.

机构信息

From the Institute of Molecular Biology and Tumor Research (IMT) and.

the Genomics Core Facility, Center for Tumor Biology and Immunology (ZTI), Philipps-University of Marburg, 35043 Marburg, Germany.

出版信息

J Biol Chem. 2018 Dec 14;293(50):19250-19262. doi: 10.1074/jbc.RA118.005341. Epub 2018 Oct 18.

Abstract

Different transcription factors operate together at promoters and enhancers to regulate gene expression. Transcription factors either bind directly to their target DNA or are tethered to it by other proteins. The transcription factor Sp2 serves as a paradigm for indirect genomic binding. It does not require its DNA-binding domain for genomic DNA binding and occupies target promoters independently of whether they contain a cognate DNA-binding motif. Hence, Sp2 is strikingly different from its closely related paralogs Sp1 and Sp3, but how Sp2 recognizes its targets is unknown. Here, we sought to gain more detailed insights into the genomic targeting mechanism of Sp2. ChIP-exo sequencing in mouse embryonic fibroblasts revealed genomic binding of Sp2 to a composite motif where a recognition sequence for TALE homeoproteins and a recognition sequence for the trimeric histone-fold domain protein nuclear transcription factor Y (Nf-y) are separated by 11 bp. We identified a complex consisting of the TALE homeobox protein Prep1, its partner PBX homeobox 1 (Pbx1), and Nf-y as the major partners in Sp2-promoter interactions. We found that the Pbx1:Prep1 complex together with Nf-y recruits Sp2 to co-occupied regulatory elements. In turn, Sp2 potentiates binding of Pbx1:Prep1 and Nf-y. We also found that the Sp-box, a short sequence motif close to the Sp2 N terminus, is crucial for Sp2's cofactor function. Our findings reveal a mechanism by which the DNA binding-independent activity of Sp2 potentiates genomic loading of Pbx1:Prep1 and Nf-y to composite motifs present in many promoters of highly expressed genes.

摘要

不同的转录因子在启动子和增强子上共同作用以调节基因表达。转录因子要么直接结合到其靶 DNA 上,要么通过其他蛋白质与靶 DNA 连接。转录因子 Sp2 是间接基因组结合的典范。它不需要其 DNA 结合结构域与基因组 DNA 结合,并且可以独立于是否包含同源 DNA 结合基序而占据靶启动子。因此,Sp2 与其密切相关的同源物 Sp1 和 Sp3 明显不同,但 Sp2 如何识别其靶标尚不清楚。在这里,我们试图更详细地了解 Sp2 的基因组靶向机制。在小鼠胚胎成纤维细胞中的 ChIP-exo 测序揭示了 Sp2 与复合基序的基因组结合,其中 TALE 同源蛋白的识别序列和三聚体组蛋白折叠结构域蛋白核转录因子 Y(Nf-y)的识别序列之间间隔 11 个碱基。我们鉴定了一个包含 TALE 同源盒蛋白 Prep1、其伴侣 PBX 同源盒蛋白 1(Pbx1)和 Nf-y 的复合物,它是 Sp2-启动子相互作用的主要伴侣。我们发现 Pbx1:Prep1 复合物与 Nf-y 一起招募 Sp2 到共同占据的调节元件。反过来,Sp2 增强了 Pbx1:Prep1 和 Nf-y 的结合。我们还发现,靠近 Sp2 N 端的短序列基序 Sp 盒对于 Sp2 的辅助因子功能至关重要。我们的研究结果揭示了一种机制,即 Sp2 的 DNA 结合非依赖性活性增强了 Pbx1:Prep1 和 Nf-y 到许多高表达基因启动子中存在的复合基序的基因组加载。

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