Sox2-Dependent 3D Chromatin Interactomes in Transcription, Neural Stem Cell Proliferation and Neurodevelopmental Diseases

Chia-Lin Wei, S. Nicolis, Yanfen Zhu, M. Pagin
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引用次数: 5

Abstract

In our article, we asked whether Sox2, a transcription factor important in brain development and disease, is involved in gene regulation through its action on long-range interactions between promoters and distant enhancers. Our findings highlight that Sox2 shapes a genome-wide network of promoter-enhancer interactions, acting by direct binding to these elements. Sox2 loss affects the three-dimensional (3D) genome and decreases the activity of a subset of genes involved in Sox2-bound interactions. At least one of such downregulated genes, Socs3, is critical for long-term neural stem cell maintenance. These results point to the possibility of identifying a transcriptional network downstream to Sox2, and involved in neural stem cell maintenance. In addition, interacting Sox2-bound enhancers are often connected to genes which are relevant, in man, to neurodevelopmental disease; this may facilitate the detection of functionally relevant mutations in regulatory elements in man, contributing to neural disease.
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Sox2依赖性三维染色质相互作用体在转录、神经干细胞增殖和神经发育疾病中的作用
在我们的文章中,我们询问在大脑发育和疾病中起重要作用的转录因子Sox2是否通过启动子和远程增强子之间的远程相互作用参与基因调控。我们的研究结果强调,Sox2形成了一个全基因组的启动子-增强子相互作用网络,通过直接结合这些元件起作用。Sox2缺失会影响三维(3D)基因组,并降低参与Sox2结合相互作用的一部分基因的活性。至少有一个这样的下调基因,Socs3,对神经干细胞的长期维持是至关重要的。这些结果指出了鉴定Sox2下游转录网络并参与神经干细胞维持的可能性。此外,相互作用的sox2结合增强子通常与与人类神经发育疾病相关的基因相连;这可能有助于检测人类调节元件中与神经疾病相关的功能突变。
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