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斑马鱼叉头转录因子FoxH1/Fast1是组织者形成所需的节点信号传导的调节因子。

The zebrafish forkhead transcription factor FoxH1/Fast1 is a modulator of nodal signaling required for organizer formation.

作者信息

Pogoda H M, Solnica-Krezel L, Driever W, Meyer D

机构信息

Abteilung für Entwicklungsbiologie, Biologie I, Universität Freiburg, Hauptstrasse1, D-79104 Freiburg, Germany.

出版信息

Curr Biol. 2000 Sep 7;10(17):1041-9. doi: 10.1016/s0960-9822(00)00669-2.

Abstract

BACKGROUND

Signaling molecules related to the Nodal protein play essential roles in the formation and patterning of the gastrula organizer and the germ layers during vertebrate development. The forkhead transcription factor FoxH1 (also known as Fast1) is a component of the Nodal signaling pathway. Although different roles have been suggested for FoxH1, its specific function during development is still unclear.

RESULTS

We report that the zebrafish locus schmalspur (sur) encodes a member of the FoxH1 family. Maternal sur transcripts were localized to the animal pole during oogenesis. Further expression was detected in a dorsoventral gradient at the onset of gastrulation and in specific domains in the organizer, notochord and lateral plate mesoderm. Embryos lacking zygotic sur function had variable deficiencies of prechordal plate and ventral neuroectoderm. In the absence of both maternal and zygotic sur function, embryos failed to form a morphologically distinct gastrula organizer and, later, developed severe defects in all axial structures. In these embryos, expression of nodal genes was initiated but not maintained. Unlike embryos lacking Nodal signaling, sur mutants formed endoderm and paraxial mesoderm.

CONCLUSIONS

FoxH1 is involved in regulatory feedback loops that control the duration and intensity of Nodal signals in early patterning. In zebrafish, FoxH1 is not essential to induce Nodal-dependent cell fates, but its function is central in modulating and enhancing morphogenetic Nodal signals.

摘要

背景

与Nodal蛋白相关的信号分子在脊椎动物发育过程中,对原肠胚组织者和胚层的形成及模式构建起着至关重要的作用。叉头转录因子FoxH1(也称为Fast1)是Nodal信号通路的一个组成部分。尽管对FoxH1提出了不同的作用,但它在发育过程中的具体功能仍不清楚。

结果

我们报道斑马鱼基因座schmalspur(sur)编码FoxH1家族的一个成员。母源sur转录本在卵子发生过程中定位于动物极。在原肠胚形成开始时,在背腹梯度以及组织者、脊索和侧板中胚层的特定区域检测到进一步的表达。缺乏合子sur功能的胚胎在前脊索板和腹侧神经外胚层存在不同程度的缺陷。在缺乏母源和合子sur功能的情况下,胚胎无法形成形态上明显的原肠胚组织者,随后,所有轴向结构都出现严重缺陷。在这些胚胎中,节点基因的表达开始但未维持。与缺乏Nodal信号的胚胎不同,sur突变体形成了内胚层和轴旁中胚层。

结论

FoxH1参与调控反馈回路,在早期模式形成中控制Nodal信号的持续时间和强度。在斑马鱼中,FoxH1对于诱导依赖Nodal的细胞命运不是必需的,但其功能在调节和增强形态发生的Nodal信号中起着核心作用。

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