Suppr超能文献

Dichaete 在果蝇胚胎发育过程中的转录调控中的作用。

The role of Dichaete in transcriptional regulation during Drosophila embryonic development.

机构信息

Department of Genetics, University of Cambridge, Cambridge, UK.

出版信息

BMC Genomics. 2013 Dec 8;14:861. doi: 10.1186/1471-2164-14-861.

Abstract

BACKGROUND

Group B Sox domain transcription factors play conserved roles in the specification and development of the nervous system in higher metazoans. However, we know comparatively little about how these transcription factors regulate gene expression, and the analysis of Sox gene function in vertebrates is confounded by functional compensation between three closely related family members. In Drosophila, only two group B Sox genes, Dichaete and SoxN, have been shown to function during embryonic CNS development, providing a simpler system for understanding the functions of this important class of regulators.

RESULTS

Using a combination of transcriptional profiling and genome-wide binding analysis we conservatively identify over 1000 high confidence direct Dichaete target genes in the Drosophila genome. We show that Dichaete plays key roles in CNS development, regulating aspects of the temporal transcription factor sequence that confer neuroblast identity. Dichaete also shows a complex interaction with Prospero in the pathway controlling the switch from stem cell self-renewal to neural differentiation. Dichaete potentially regulates many more genes in the Drosophila genome and was found to be associated with over 2000 mapped regulatory elements.

CONCLUSIONS

Our analysis suggests that Dichaete acts as a transcriptional hub, controlling multiple regulatory pathways during CNS development. These include a set of core CNS expressed genes that are also bound by the related Sox2 gene during mammalian CNS development. Furthermore, we identify Dichaete as one of the transcription factors involved in the neural stem cell transcriptional network, with evidence supporting the view that Dichaete is involved in controlling the temporal series of divisions regulating neuroblast identity.

摘要

背景

B 组 Sox 结构域转录因子在高等后生动物的神经系统特化和发育中发挥保守作用。然而,我们对这些转录因子如何调节基因表达知之甚少,并且脊椎动物 Sox 基因功能的分析受到三个密切相关的家族成员之间功能补偿的影响。在果蝇中,只有两个 B 组 Sox 基因,Dichaete 和 SoxN,已被证明在胚胎 CNS 发育过程中发挥作用,为理解这一重要调控因子类的功能提供了一个更简单的系统。

结果

我们通过转录谱分析和全基因组结合分析相结合,保守地鉴定了果蝇基因组中超过 1000 个高可信度的 Dichaete 直接靶基因。我们表明 Dichaete 在 CNS 发育中发挥关键作用,调节赋予神经母细胞特征的时空转录因子序列的各个方面。Dichaete 还与 Prospero 在控制从干细胞自我更新到神经分化的转变的途径中表现出复杂的相互作用。Dichaete 可能在果蝇基因组中调节更多的基因,并且与超过 2000 个映射的调控元件相关联。

结论

我们的分析表明,Dichaete 作为转录枢纽,在 CNS 发育过程中控制多个调控途径。其中包括一组核心 CNS 表达基因,在哺乳动物 CNS 发育过程中也与相关的 Sox2 基因结合。此外,我们将 Dichaete 鉴定为参与神经干细胞转录网络的转录因子之一,有证据表明 Dichaete 参与控制调节神经母细胞特征的分裂时间序列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d821/3866562/d875d2caf2f7/1471-2164-14-861-1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验