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基因特异性转录因子聚类中的特异性是由基因组编码的。

Specificity in clustering of gene-specific transcription factors is encoded in the genome.

作者信息

Dongre Shivali, Vastenhouw Nadine L

机构信息

Center for Integrative Genomics, University of Lausanne, Quartier Sorge, 1015 Lausanne, Switzerland.

出版信息

Nucleic Acids Res. 2025 Jul 8;53(13). doi: 10.1093/nar/gkaf625.

Abstract

Gene-specific transcription factors (TFs) often form clusters in the nucleus. Such clusters can facilitate transcription, but it remains unclear how they form. It has been suggested that clusters are seeded by the sequence-specific binding of TFs to DNA and grow by interactions between intrinsically disordered regions (IDRs) that bring in more TFs. In this model, specificity in TF clustering must be provided by the IDRs. To investigate this model, we studied TF clustering by quantitative imaging of Nanog, Pou5f3, and Sox19b in zebrafish embryos. Using mutant TFs, we show that the formation of a TF cluster requires the DNA-binding domain (DBD) as well as at least one of its IDRs. Importantly, IDRs are not sufficient to join a pre-existing cluster. Rather, both IDR and DBD are needed. Finally, using chimeric TFs, we show that while IDRs are required to join a cluster, they are quite promiscuous, and it is the DBD that provides specificity to the clustering of a TF. Thus, for any TF to join a cluster, motif recognition is required, which explains the specificity in TF cluster formation. Taken together, our work provides an alternative model for how specificity is achieved in the organization of transcriptional machinery in the nucleus.

摘要

基因特异性转录因子(TFs)通常在细胞核中形成簇。这种簇能够促进转录,但它们如何形成仍不清楚。有人提出,簇由TFs与DNA的序列特异性结合作为种子,并通过引入更多TFs的内在无序区域(IDRs)之间的相互作用而生长。在这个模型中,TF聚类的特异性必须由IDRs提供。为了研究这个模型,我们通过对斑马鱼胚胎中的Nanog、Pou5f3和Sox19b进行定量成像来研究TF聚类。使用突变型TFs,我们表明TF簇的形成需要DNA结合结构域(DBD)及其至少一个IDR。重要的是,IDRs不足以加入预先存在的簇。相反,IDR和DBD都需要。最后,使用嵌合TFs,我们表明虽然IDRs是加入簇所必需的,但它们相当混杂,是DBD为TF的聚类提供特异性。因此,对于任何TF要加入簇,都需要基序识别,这解释了TF簇形成中的特异性。总之,我们的工作为细胞核中转录机器组织如何实现特异性提供了一个替代模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0349/12255298/c89157a9a5fb/gkaf625figgra1.jpg

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