Sox2增强子簇调控小鼠胚胎干细胞的区域特异性神经命运。

IF 2.4 3区 生物学 Q3 GENETICS & HEREDITY G3: Genes|Genomes|Genetics Pub Date : 2025-04-17 DOI:10.1093/g3journal/jkaf012
Ian C Tobias, Sakthi D Moorthy, Virlana M Shchuka, Lida Langroudi, Mariia Cherednychenko, Zoe E Gillespie, Andrew G Duncan, Ruxiao Tian, Natalia A Gajewska, Raphaël B Di Roberto, Jennifer A Mitchell
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引用次数: 0

摘要

性别决定区Y盒2 (Sox2)是胚胎发生和神经干细胞和祖细胞(NSPC)维持的关键转录因子。虽然远端增强子控制胚胎干细胞(ESCs)中的Sox2,但靠近该基因的增强子与神经发育中的Sox2转录调控有关。我们假设一个下游增强子簇,称为Sox2调控区2-18 (SRR2-18),调节神经干细胞中Sox2的转录,我们在小鼠ESCs衍生的NSPCs中研究了这一点。利用功能基因组学和CRISPR-Cas9介导的缺失分析,我们研究了SRR2-18在神经分化过程中对Sox2调控的作用。转录组分析表明,即使失去一个SRR2-18拷贝也会破坏NSPCs的区域特异性身份,减少与胚胎神经系统更前区域相关的基因的表达。Sox2神经增强子簇的纯合缺失导致Sox2蛋白减少,与转录机制的相互作用减少,并导致全基因组染色质可及性紊乱,进一步影响神经发育和前后区域化基因的表达。此外,纯合子NSPC缺失表现出自我更新缺陷和大脑中发现的细胞类型分化受损。总之,我们的数据定义了NSPCs中控制Sox2转录的顺式调控增强子簇,并强调了神经分化过程对Sox2转录减少的敏感性,这导致分化为后神经细胞,特别是尾神经管。本研究强调了SRR2-18精确调控Sox2在神经分化中的重要性。
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A Sox2 enhancer cluster regulates region-specific neural fates from mouse embryonic stem cells.

Sex-determining region Y box 2 (Sox2) is a critical transcription factor for embryogenesis and neural stem and progenitor cell (NSPC) maintenance. While distal enhancers control Sox2 in embryonic stem cells (ESCs), enhancers closer to the gene are implicated in Sox2 transcriptional regulation in neural development. We hypothesize that a downstream enhancer cluster, termed Sox2 regulatory regions 2-18 (SRR2-18), regulates Sox2 transcription in neural stem cells and we investigate this in NSPCs derived from mouse ESCs. Using functional genomics and CRISPR-Cas9-mediated deletion analyses, we investigate the role of SRR2-18 in Sox2 regulation during neural differentiation. Transcriptome analyses demonstrate that the loss of even 1 copy of SRR2-18 disrupts the region-specific identity of NSPCs, reducing the expression of genes associated with more anterior regions of the embryonic nervous system. Homozygous deletion of this Sox2 neural enhancer cluster causes reduced SOX2 protein, less frequent interaction with transcriptional machinery, and leads to perturbed chromatin accessibility genome-wide further affecting the expression of neurodevelopmental and anterior-posterior regionalization genes. Furthermore, homozygous NSPC deletants exhibit self-renewal defects and impaired differentiation into cell types found in the brain. Altogether, our data define a cis-regulatory enhancer cluster controlling Sox2 transcription in NSPCs and highlight the sensitivity of neural differentiation processes to decreased Sox2 transcription, which causes differentiation into posterior neural fates, specifically the caudal neural tube. This study highlights the importance of precise Sox2 regulation by SRR2-18 in neural differentiation.

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来源期刊
G3: Genes|Genomes|Genetics
G3: Genes|Genomes|Genetics GENETICS & HEREDITY-
CiteScore
5.10
自引率
3.80%
发文量
305
审稿时长
3-8 weeks
期刊介绍: G3: Genes, Genomes, Genetics provides a forum for the publication of high‐quality foundational research, particularly research that generates useful genetic and genomic information such as genome maps, single gene studies, genome‐wide association and QTL studies, as well as genome reports, mutant screens, and advances in methods and technology. The Editorial Board of G3 believes that rapid dissemination of these data is the necessary foundation for analysis that leads to mechanistic insights. G3, published by the Genetics Society of America, meets the critical and growing need of the genetics community for rapid review and publication of important results in all areas of genetics. G3 offers the opportunity to publish the puzzling finding or to present unpublished results that may not have been submitted for review and publication due to a perceived lack of a potential high-impact finding. G3 has earned the DOAJ Seal, which is a mark of certification for open access journals, awarded by DOAJ to journals that achieve a high level of openness, adhere to Best Practice and high publishing standards.
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