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Sp8和COUP-TF1相互调节皮质祖细胞中的模式形成和Fgf信号传导。

Sp8 and COUP-TF1 reciprocally regulate patterning and Fgf signaling in cortical progenitors.

作者信息

Borello Ugo, Madhavan Mayur, Vilinsky Ilya, Faedo Andrea, Pierani Alessandra, Rubenstein John, Campbell Kenneth

机构信息

Inserm U846, Stem Cell and Brain Research Institute, Bron 69500, France.

出版信息

Cereb Cortex. 2014 Jun;24(6):1409-21. doi: 10.1093/cercor/bhs412. Epub 2013 Jan 10.

DOI:10.1093/cercor/bhs412
PMID:23307639
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4014177/
Abstract

To gain new insights into the transcriptional regulation of cortical development, we examined the role of the transcription factor Sp8, which is downstream of Fgf8 signaling and known to promote rostral cortical development. We have used a binary transgenic system to express Sp8 throughout the mouse telencephalon in a temporally restricted manner. Our results show that misexpression of Sp8 throughout the telencephalon, at early but not late embryonic stages, results in cortical hypoplasia, which is accompanied by increased cell death, reduced proliferation, and precocious neuronal differentiation. Misexpression of Sp8 at early developmental stages represses COUP-TF1 expression, a negative effector of Fgf signaling and a key promoter of posterior cortical identity, while ablation of Sp8 has the opposite effect. In addition, transgenic misexpression of COUP-TF1 resulted in downregulation of Sp8, indicating a reciprocal cross-regulation between these 2 transcription factors. Although Sp8 has been suggested to induce and/or maintain Fgf8 expression in the embryonic telencephalon, neither Fgf8 nor Fgf15 was upregulated using our gain-of-function approach. However, misexpression of Sp8 greatly increased the expression of Fgf target molecules, suggesting enhanced Fgf signaling. Thus, we propose that Sp8 promotes rostral and dorsomedial cortical development by repressing COUP-TF1 and promoting Fgf signaling in pallial progenitors.

摘要

为了深入了解皮质发育的转录调控机制,我们研究了转录因子Sp8的作用。Sp8位于Fgf8信号通路的下游,已知其可促进皮质前端的发育。我们利用二元转基因系统,在特定的时间范围内,使Sp8在整个小鼠端脑中表达。我们的研究结果表明,在胚胎早期而非晚期,Sp8在整个端脑中的异常表达会导致皮质发育不全,同时伴有细胞死亡增加、增殖减少以及神经元过早分化。在发育早期阶段,Sp8的异常表达会抑制COUP-TF1的表达,COUP-TF1是Fgf信号的负向调节因子,也是皮质后端特征的关键促进因子,而敲除Sp8则会产生相反的效果。此外,COUP-TF1的转基因异常表达导致Sp8下调,这表明这两种转录因子之间存在相互交叉调节。尽管有研究表明Sp8可在胚胎端脑中诱导和/或维持Fgf8的表达,但在我们的功能获得性实验中,Fgf8和Fgf15均未上调。然而,Sp8的异常表达显著增加了Fgf靶分子的表达,提示Fgf信号增强。因此,我们认为Sp8通过抑制COUP-TF1并促进皮质祖细胞中的Fgf信号,来促进皮质前端和背内侧的发育。

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本文引用的文献

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Developmental origin of the neuronal subtypes that comprise the amygdalar fear circuit in the mouse.在小鼠中,组成杏仁核恐惧回路的神经元亚型的发育起源。
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Repression of Fgf signaling by sprouty1-2 regulates cortical patterning in two distinct regions and times. sprouty1-2 通过抑制 Fgf 信号调节两个不同区域和时间的皮质模式形成。
J Neurosci. 2010 Mar 17;30(11):4015-23. doi: 10.1523/JNEUROSCI.0307-10.2010.
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FGF15 promotes neurogenesis and opposes FGF8 function during neocortical development.成纤维细胞生长因子15(FGF15)在新皮质发育过程中促进神经发生并拮抗成纤维细胞生长因子8(FGF8)的功能。
Neural Dev. 2008 Jul 14;3:17. doi: 10.1186/1749-8104-3-17.
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Cereb Cortex. 2008 Aug;18(8):1865-75. doi: 10.1093/cercor/bhm209. Epub 2007 Dec 7.
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Neuron. 2007 Oct 25;56(2):252-69. doi: 10.1016/j.neuron.2007.10.010.