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在斑马鱼中脑-后脑边界组织者的建立过程中需要spiel ohne grenzen/pou2。

spiel ohne grenzen/pou2 is required during establishment of the zebrafish midbrain-hindbrain boundary organizer.

作者信息

Belting H G, Hauptmann G, Meyer D, Abdelilah-Seyfried S, Chitnis A, Eschbach C, Söll I, Thisse C, Thisse B, Artinger K B, Lunde K, Driever W

机构信息

Albert-Ludwigs-Universität Freiburg, Institut für Biologie I, Hauptstrasse 1, D-79104 Freiburg, Germany.

出版信息

Development. 2001 Nov;128(21):4165-76. doi: 10.1242/dev.128.21.4165.

Abstract

The vertebrate midbrain-hindbrain boundary (MHB) organizes patterning and neuronal differentiation in the midbrain and anterior hindbrain. Formation of this organizing center involves multiple steps, including positioning of the MHB within the neural plate, establishment of the organizer and maintenance of its regional identity and signaling activities. Juxtaposition of the Otx2 and Gbx2 expression domains positions the MHB. How the positional information is translated into activation of Pax2, Wnt1 and Fgf8 expression during MHB establishment remains unclear. In zebrafish spiel ohne grenzen (spg) mutants, the MHB is not established, neither isthmus nor cerebellum form, the midbrain is reduced in size and patterning abnormalities develop within the hindbrain. In spg mutants, despite apparently normal expression of otx2, gbx1 and fgf8 during late gastrula stages, the initial expression of pax2.1, wnt1 and eng2, as well as later expression of fgf8 in the MHB primordium are reduced. We show that spg mutants have lesions in pou2, which encodes a POU-domain transcription factor. Maternal pou2 transcripts are distributed evenly in the blastula, and zygotic expression domains include the midbrain and hindbrain primordia during late gastrulation. Microinjection of pou2 mRNA can rescue pax2.1 and wnt1 expression in the MHB of spg/pou2 mutants without inducing ectopic expression. This indicates an essential but permissive role for pou2 during MHB establishment. pou2 is expressed normally in noi/pax2.1 and ace/fgf8 zebrafish mutants, which also form no MHB. Thus, expression of pou2 does not depend on fgf8 and pax2.1. Our data suggest that pou2 is required for the establishment of the normal expression domains of wnt1 and pax2.1 in the MHB primordium.

摘要

脊椎动物的中脑-后脑边界(MHB)在中脑和前脑后部组织模式形成和神经元分化。这个组织中心的形成涉及多个步骤,包括MHB在神经板内的定位、组织者的建立以及其区域特性和信号活动的维持。Otx2和Gbx2表达域的并置确定了MHB的位置。在MHB建立过程中,位置信息如何转化为Pax2、Wnt1和Fgf8表达的激活仍不清楚。在斑马鱼无边界(spg)突变体中,MHB未形成,峡部和小脑均未发育,中脑尺寸减小且后脑出现模式异常。在spg突变体中,尽管在原肠胚晚期otx2、gbx1和fgf8的表达看似正常,但pax2.1、wnt1和eng2的初始表达以及后来MHB原基中fgf8的表达均降低。我们发现spg突变体在pou2基因上有损伤,该基因编码一种POU结构域转录因子。母源pou2转录本在囊胚中均匀分布,合子表达域在原肠胚晚期包括中脑和后脑原基。显微注射pou2 mRNA可以挽救spg/pou2突变体MHB中pax2.1和wnt1的表达,而不会诱导异位表达。这表明pou2在MHB建立过程中起着重要但非决定性的作用。pou2在noi/pax2.1和ace/fgf8斑马鱼突变体中也正常表达,这些突变体同样不形成MHB。因此,pou2的表达不依赖于fgf8和pax2.1。我们的数据表明,pou2是MHB原基中wnt1和pax2.1正常表达域建立所必需的。

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