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鸡和鼠胚胎神经管发育过程中 B1 和 B2 Sox 基因的表达:普遍特征与物种差异。

B1 and B2 Sox gene expression during neural plate development in chicken and mouse embryos: universal versus species-dependent features.

机构信息

Graduate School of Frontier Biosciences, Osaka University, Yamadaoka, Suita, Japan.

出版信息

Dev Growth Differ. 2011 Aug;53(6):761-71. doi: 10.1111/j.1440-169X.2011.01286.x. Epub 2011 Jul 18.

Abstract

Cumulative evidence now indicates pivotal roles for the group B1 Sox genes, Sox1, Sox2 and Sox3 in the genesis and development of neural primordia. Shared functions for the Sox1, Sox2 and Sox3 protein products have also been indicated. This emphasizes the importance and integral role of the group B1 Sox genes in regulating the neural primordia. We here review what is currently known about the expression patterns of both the group B1 Sox genes and the related group B2 Sox21 gene during the embryonic stages when the neural plate develops. These expression profiles are compared between the chicken and mouse embryos, both representatives of amniote species. This comparison indicates a gross conservation of the regulation of individual Sox genes, yet also demonstrates the existence of species-dependent variations, which should be taken into account when data from different species are being compared. To link the expression patterns and transcriptional regulation of these genes, contribution of gene-specific enhancers are discussed. The regulation of B1 Sox genes in the axial stem cells, the common precursors to the posterior neural plate and paraxial mesoderm and located at the posterior end of developing neural plate, is also highlighted in this review. This article thus provides a guide to performing readouts of B1/B2 Sox expression data during neural plate development in amniotes.

摘要

目前的累积证据表明,B1 组 Sox 基因 Sox1、Sox2 和 Sox3 在神经原基的发生和发育中起着关键作用。 Sox1、Sox2 和 Sox3 蛋白产物的共享功能也已被表明。这强调了 B1 组 Sox 基因在调节神经原基中的重要性和整体作用。我们在这里回顾了当前已知的 B1 组 Sox 基因和相关的 B2 组 Sox21 基因在胚胎发育过程中神经板发育时的表达模式。在鸡和鼠胚胎之间进行了这些表达谱的比较,它们都是羊膜动物的代表。这种比较表明单个 Sox 基因的调控存在很大的保守性,但也表明存在物种依赖性的变异,在比较来自不同物种的数据时应考虑到这些变异。为了将这些基因的表达模式和转录调控联系起来,讨论了基因特异性增强子的贡献。本文还强调了 B1 Sox 基因在轴向干细胞中的调控,轴向干细胞是后神经板和轴旁中胚层的共同前体,位于发育中的神经板后端。因此,本文为在羊膜动物的神经板发育过程中进行 B1/B2 Sox 表达数据的读取提供了指导。

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