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Xrx1调控非洲爪蟾前神经板中的细胞增殖和神经发生。

Xrx1 controls proliferation and neurogenesis in Xenopus anterior neural plate.

作者信息

Andreazzoli Massimiliano, Gestri Gaia, Cremisi Federico, Casarosa Simona, Dawid Igor B, Barsacchi Giuseppina

机构信息

Dipartimento di Fisiologia e Biochimica, Università degli Studi di Pisa, Via Carducci 13, 56010 Ghezzano (Pisa), Italy.

出版信息

Development. 2003 Nov;130(21):5143-54. doi: 10.1242/dev.00665.

Abstract

In Xenopus neuroectoderm, posterior cells start differentiating at the end of gastrulation, while anterior cells display an extended proliferative period and undergo neurogenesis only at tailbud stage. Recent studies have identified several important components of the molecular pathways controlling posterior neurogenesis, but little is known about those controlling the timing and positioning of anterior neurogenesis. We investigate the role of Xrx1, a homeobox gene required for eye and anterior brain development, in the control of proliferation and neurogenesis of the anterior neural plate. Xrx1 is expressed in the entire proliferative region of the anterior neural plate delimited by cells expressing the neuronal determination gene X-ngnr-1, the neurogenic gene X-Delta-1, and the cell cycle inhibitor p27Xic1. Positive and negative signals position Xrx1 expression to this region. Xrx1 is activated by chordin and Hedgehog gene signaling, which induce anterior and proliferative fate, and is repressed by the differentiation-promoting activity of neurogenin and retinoic acid. Xrx1 is required for anterior neural plate proliferation and, when overexpressed, induces proliferation, inhibits X-ngnr-1, X-Delta-1 and N-tubulin and counteracts X-ngnr-1- and retinoic acid-mediated differentiation. We find that Xrx1 does not act by increasing lateral inhibition but by inducing the antineurogenic transcriptional repressors Xhairy2 and Zic2, and by repressing p27Xic1. The effects of Xrx1 on proliferation, neurogenesis and gene expression are restricted to the most rostral region of the embryo, implicating this gene as an anterior regulator of neurogenesis.

摘要

在非洲爪蟾的神经外胚层中,后端细胞在原肠胚形成末期开始分化,而前端细胞则有一个延长的增殖期,并且仅在尾芽期才进行神经发生。最近的研究已经确定了控制后端神经发生的分子途径中的几个重要成分,但对于控制前端神经发生的时间和定位的那些成分却知之甚少。我们研究了Xrx1(一种眼和前脑发育所需的同源框基因)在控制前神经板增殖和神经发生中的作用。Xrx1在前神经板的整个增殖区域表达,该区域由表达神经元决定基因X-ngnr-1、神经发生基因X-Delta-1和细胞周期抑制剂p27Xic1的细胞界定。正负信号将Xrx1的表达定位到这个区域。Xrx1被腱蛋白和刺猬基因信号激活,这些信号诱导前端和增殖命运,并且被神经生成素和视黄酸的促进分化活性所抑制。前神经板增殖需要Xrx1,并且当过度表达时,它会诱导增殖、抑制X-ngnr-1、X-Delta-1和N-微管蛋白,并抵消X-ngnr-1和视黄酸介导的分化。我们发现Xrx1不是通过增加侧向抑制起作用,而是通过诱导抗神经发生的转录抑制因子Xhairy2和Zic2,以及通过抑制p27Xic1起作用。Xrx1对增殖、神经发生和基因表达的影响仅限于胚胎的最前端区域,这表明该基因是神经发生的前端调节因子。

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