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神经嵴的发育受转录因子Sox9调控。

Neural crest development is regulated by the transcription factor Sox9.

作者信息

Cheung Martin, Briscoe James

机构信息

Developmental Neurobiology, National Institute for Medical Research, Mill Hill, London, NW7 1AA, UK.

出版信息

Development. 2003 Dec;130(23):5681-93. doi: 10.1242/dev.00808. Epub 2003 Oct 1.

DOI:10.1242/dev.00808
PMID:14522876
Abstract

The neural crest is a transient migratory population of stem cells derived from the dorsal neural folds at the border between neural and non-neural ectoderm. Following induction, prospective neural crest cells are segregated within the neuroepithelium and then delaminate from the neural tube and migrate into the periphery, where they generate multiple differentiated cell types. The intrinsic determinants that direct this process are not well defined. Group E Sox genes (Sox8, Sox9 and Sox10) are expressed in the prospective neural crest and Sox9 expression precedes expression of premigratory neural crest markers. Here, we show that group E Sox genes act at two distinct steps in neural crest differentiation. Forced expression of Sox9 promotes neural-crest-like properties in neural tube progenitors at the expense of central nervous system neuronal differentiation. Subsequently, in migratory neural crest cells, SoxE gene expression biases cells towards glial cell and melanocyte fate, and away from neuronal lineages. Although SoxE genes are sufficient to initiate neural crest development they do not efficiently induce the delamination of ectopic neural crest cells from the neural tube consistent with the idea that this event is independently controlled. Together, these data identify a role for group E Sox genes in the initiation of neural crest development and later SoxE genes influence the differentiation pathway adopted by migrating neural crest cells.

摘要

神经嵴是一群短暂迁移的干细胞,源自神经外胚层和非神经外胚层边界处的背侧神经褶。诱导后,预期的神经嵴细胞在神经上皮内分离,然后从神经管分层并迁移到外周,在那里它们产生多种分化的细胞类型。指导这一过程的内在决定因素尚未明确界定。E组Sox基因(Sox8、Sox9和Sox10)在预期的神经嵴中表达,且Sox9的表达先于迁移前神经嵴标志物的表达。在此,我们表明E组Sox基因在神经嵴分化的两个不同步骤中起作用。Sox9的强制表达以中枢神经系统神经元分化为代价,促进神经管祖细胞具有神经嵴样特性。随后,在迁移的神经嵴细胞中,SoxE基因表达使细胞偏向于神经胶质细胞和黑素细胞命运,而远离神经元谱系。尽管SoxE基因足以启动神经嵴发育,但它们不能有效地诱导异位神经嵴细胞从神经管分层,这与该事件受独立控制的观点一致。总之,这些数据确定了E组Sox基因在神经嵴发育起始中的作用,并且后期SoxE基因影响迁移的神经嵴细胞所采用的分化途径。

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