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Gsh2 转录因子在神经发生中的保守和新功能。

Conserved and novel roles for the Gsh2 transcription factor in primary neurogenesis.

机构信息

Department of Biology, University of York, York YO10 5YW, UK.

出版信息

Development. 2010 Aug;137(16):2623-31. doi: 10.1242/dev.047159. Epub 2010 Jul 7.

DOI:10.1242/dev.047159
PMID:20610487
Abstract

The Gsx genes encode members of the ParaHox family of homeodomain transcription factors, which are expressed in the developing central nervous system in members of all major groups of bilaterians. The Gsx genes in Xenopus show similar patterns of expression to their mammalian homologues during late development. However, they are also expressed from early neurula stages in an intermediate region of the open neural plate where primary interneurons form. The Gsx homologue in the protostome Drosophila is expressed in a corresponding intermediate region of the embryonic neuroectoderm, and is essential for the correct specification of the neuroblasts that arise from it, suggesting that Gsx genes may have played a role in intermediate neural specification in the last common bilaterian ancestor. Here, we show that manipulation of Gsx function disrupts the differentiation of primary interneurons. We demonstrate that, despite their similar expression patterns, the uni-directional system of interactions between homeodomain transcription factors from the Msx, Nkx and Gsx families in the Drosophila neuroectoderm is not conserved between their homologues in the Xenopus open neural plate. Finally, we report the identification of Dbx1 as a direct target of Gsh2-mediated transcriptional repression, and show that a series of cross-repressive interactions, reminiscent of those that exist in the amniote neural tube, act between Gsx, Dbx and Nkx transcription factors to pattern the medial aspect of the central nervous system at open neural plate stages in Xenopus.

摘要

Gsx 基因编码同源异型盒转录因子 ParaHox 家族的成员,在所有后生动物主要类群的发育中枢神经系统中表达。非洲爪蟾的 Gsx 基因在晚期发育过程中与它们的哺乳动物同源物表现出相似的表达模式。然而,它们也在前神经胚期在开放神经板的中间区域表达,初级中间神经元在此形成。原肠胚体果蝇中的 Gsx 同源物在胚胎神经外胚层的相应中间区域表达,对于从中产生的神经母细胞的正确特化是必需的,这表明 Gsx 基因可能在前共同后生动物祖先中在中间神经特化中发挥了作用。在这里,我们表明 Gsx 功能的操纵会破坏初级中间神经元的分化。我们证明,尽管它们的表达模式相似,但果蝇神经外胚层中来自 Msx、Nkx 和 Gsx 家族的同源异型盒转录因子之间的单向相互作用系统在其与非洲爪蟾开放神经板中的同源物之间并不保守。最后,我们报告了 Dbx1 作为 Gsh2 介导的转录抑制的直接靶标的鉴定,并表明一系列交叉抑制相互作用,类似于在羊膜动物神经管中存在的那些,在 Gsx、Dbx 和 Nkx 转录因子之间起作用,以在 Xenopus 的开放神经板阶段对中枢神经系统的中侧进行模式化。

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